113
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

Identification of Rice Varieties with High Tolerance or Sensitivity to Copper

, , &
Pages 121-136 | Received 06 Jun 2006, Accepted 15 Jul 2007, Published online: 31 Dec 2007

REFERENCES

  • Baker , A. J. M. 1987 . Metal tolerance . New Phytologist , 106 : 93 – 111 .
  • Baszynski , T. , Król , M. , Krupa , Z. , Ruszkowska , M. , Wojcieska , U. and Wolinska , D. 1982 . Photosynthetic apparatus of spinach exposed to excess copper . Zeitschrift fur Pflanzenphysiology , 108 : 385 – 395 .
  • Branquinho , C. , Brown , D. H. and Catarino , F. 1997 . The cellular location of Cu in lichens and its effects on membrane integrity and chlorophyll fluorescence . Environmental and Experimental Botany , 38 : 165 – 179 .
  • Bringezu , K. , Lichtenberger , O. , Leopold , I. and Neumann , D. 1999 . Heavy metal tolerance of Silene vulgaris . Journal of Plant Physiology , 154 : 536 – 546 .
  • Chatterjee , J. and Chatterfee , C. 2000 . Phytotoxicity of cobalt, chromium and copper in cauliflower . Environmental Pollution , 109 : 69 – 74 .
  • Chen , T. C. , Chen , L. M. , Lin , C. C. and Kao , C. H. 2001 . Regulation of proline accumulation in detached rice leaves exposed to excess copper . Plant Science , 160 : 283 – 290 .
  • Cobbett , C. and Goldsbrough , P. 2002 . Phytochelatins and metallothioneins: Roles in heavy metal detoxification and homeostasis . Annual Review of Plant Biology , 53 : 159 – 182 .
  • Demirevska-Kepova , K. , Simova-Stoilova , L. , Stoyanova , Z. , Hölzer , R. and Feller , U. 2004 . Biochemical changes in barley plants after excessive supply of copper and manganese . Environmental and Experimental Botany , 52 : 253 – 266 .
  • Ernst , W. H. O. , Nelissen , H. J. M. and Ten Bookum , W. M. 2000 . Combination toxicology of metal-enriched soils: physiological responses of a Zn- and Cu-resistant ecotype of Silene vulgaris on polymetallic soils . Environmental and Experimental Botany , 43 : 55 – 71 .
  • Fernandes , J. C. and Henriques , F. S. 1991 . Biochemical, physiological, and structural effects of excess copper in plants . The Botanical Review , 57 ( 3 ) : 247 – 273 .
  • Hall , J. L. 2002 . Cellular mechanisms for heavy metal detoxification and tolerance . Journal of Experimental Botany , 53 : 1 – 11 .
  • Hart , J. J. , Di Tomaso , J. M. , Linscott , D. L. and Kochian , L. V. 1992 . Characterization of the transport and cellular compartmentation of paraquat in roots of intact maize seedlings . Pesticide biochemistry and physiology , 43 : 212 – 222 .
  • Lidon , F. C. and Henriques , F. S. 1992 . Copper toxicity in rice: diagnostic criteria and effect on tissue Mn and Fe . Soil Science , 154 : 130 – 135 .
  • Lidon , F. C. and Henriques , F. S. 1998 . Role of rice shoot vacuoles in copper toxicity regulation . Environmental and Experimental Botany , 39 : 197 – 202 .
  • Llorens , N. , Arola , L. , Blade , C. and Mas , A. 2000 . Effects of copper exposure upon nitrogen metabolism in tissue cultured Vitis vinifera . Plant Science , 160 : 159 – 163 .
  • Llugany , M. , Lombini , A. , Poschenrieder , C. , Dinelli , E. and Barceló , J. 2003 . Different mechanisms account for enhanced copper resistance in Silene armeria ecotypes from mine spoil and serpentine sites . Plant Soil , 251 : 55 – 63 .
  • Lombardi , L. and Sebastiani , L. 2005 . Copper toxicity in Prunus cerasifera: Growth and antioxidant enzymes responses of in vitro grown plants . Plant Science , 168 : 797 – 802 .
  • Lou , L. Q. , Shen , Z. G. and Li , X. D. 2004 . The copper tolerance mechanisms of Elsholtzia haichowensis, a plant from copper-enriched soils . Environmental and Experimental Botany , 51 : 111 – 120 .
  • Luna , C. M. , Gonzalez , C. A. and Trippi , V. S. 1994 . Oxidative damage caused by an excess of copper in oat leaves . Plant and Cell Physiology , 35 : 11 – 15 .
  • Macfie , S. M. and Welbourn , P. M. 2000 . The cell wall as a barrier to uptake of metal ions in the unicellular green alga Chlamydomonas reinardtii (Chlorophyceae) . Archives of Environmental Contamination and Toxicology , 39 : 413 – 419 .
  • Marschner , H. 1995 . Mineral nutrition of higher plants, , second ed , 337 – 347 . London : Academic Press .
  • Monni , S. , Salemaa , M. , White , C. , Tuittila , E. and Huopalainen , M. 2000 . Copper resistance of Calluna vulgaris originating from the pollution gradient of a Cu-Ni smelter, in Southwest Finland . Environmental Pollution , 109 : 211 – 219 .
  • Morelli , E. and Scarano , G. 2004 . Copper-induced changes of non-protein thiols and antioxidant enzymes in the marine microalga Phaeodactylum tricornutum . Plant Science , 167 : 289 – 296 .
  • Nagalakshmi , N. and Prasad , M. N. V. 2001 . Responses of glutathione cycle enzymes and glutathione metabolism to copper stress in Scenedesmus bijugatus . Plant Science , 160 : 291 – 299 .
  • Nielsen , H. D. , Brownlee , C. , Coelho , S. M. and Brown , M. 2003 . Inter-population differences in inherited copper tolerance involve photosynthetic adaptation and exclusion mechanisms in Fucus serratus . New Phytologist , 160 : 157 – 165 .
  • Nishizono , H. , Ichikawa , H. , Suziki , S. and Ishii , F. 1987 . The role of the root cell wall in the heavy metal tolerance of Athyrium yokoscense . Plant Soil , 101 : 15 – 20 .
  • Ouzounidou , G. 1994 . Copper-induced changes on growth, metal content and photosynthetic function of Alyssum montnum L. plants . Environmental and Experimental Botany , 34 : 165 – 172 .
  • Patterson , W. A. and Olson , J. J. 1983 . Effects of heavy metals on radical growth of selected woody species germinated on filter paper, mineral and organic soil substrates . Canadian Journal of Forest Research-Revue Canadienne de Recherche Forestiere , 13 : 233 – 238 .
  • Prasad , M. N. V. , Malec , P. , Waloszek , A. , Bojko , M. and Strzalka , K. 2001 . Physiological responses of Lemna trisulca L. (duckweed) to cadmium and copper bioaccumulation . Plant Science , 161 : 881 – 889 .
  • Ratkevicius , N. , Correa , J. A. and Moenne , A. 2003 . Copper accumulation, synthesis of ascorbate and activation of ascorbate peroxidase in Enteromorpha compressa (L.) Grev. (Chlorophyta) from heavy metal-enriched environments in northern Chile . Plant Cell and Environment , 26 : 1599 – 1608 .
  • Salt , D. E. , Prince , R. , Pickering , I. J. and Raskin , I. 1995 . Mechanism of cadmium mobility and accumulation in Indian mustard . Plant Physiology , 109 : 1427 – 1433 .
  • Shen , Z. G. , Zhang , F. Q. and Zhang , F. S. 1998 . Toxicity of copper and zinc in seedlings of mung bean and inducing accumulation of polyamine . Journal of Plant Nutrition , 21 : 1153 – 1162 .
  • Shu , W. S. , Ye , Z. H. , Lan , D. Y. , Zhang , Z. Q. and Wong , M. H. 2002 . Lead, zinc and copper accumulation and tolerance in populations of Paspalum distichum Cynodon daztylon . Environmental Pollution , 120 : 445 – 453 .
  • Stiborova , M. , Doubravova , M. , Brezinova , A. and Friedrich , A. 1986 . Effect of heavy metal ions on growth and biochemical characteristics of photosynthesis of barley (Hordeum vulgare L.) . Photosynthetica , 20 : 418 – 425 .
  • Stohs , S. J. and Bagchi , D. 1995 . Oxidative mechanisms in the toxicity of metal ions . Free Radical Biology and Medicine , 18 : 321 – 336 .
  • Tripathi , B. N. and Gaur , J. P. 2004 . Relationship between copper- and zinc-induced oxidative stress and proline accumulation in Scenedesmus sp . Planta , 219 : 397 – 404 .
  • Utriainen , M. A. , Kärenlampi , L. V. , Kärenlampi , S. O. and Schat , H. 1997 . Differential tolerance to copper and zinc of micropropagated birches tested in hydroponics . New Phytologist , 137 : 543 – 549 .
  • Wisniewski , L. and Dickinson , N. M. 2003 . Toxicity of copper to Quercus robur (English Oak) seedlings from a copper-rich soil . Environmental and Experimental Botany , 50 : 99 – 107 .
  • Zhang , X. Z. 1986 . Determination of plant chlorophyll content by a mixture with acetone and ethanol . Liaoning Agricultural Sciences , 3 : 26 – 28 . (in Chinese)
  • Zhao , F. , McGrath , S. P. and Crosland , A. R. 1994 . Comparison of three wet digestion methods for the determination of plant sulfur by inductively coupled plasma atomic emission spectrometry (ICP-AES) . Communications in soil science and plant analysis , 25 : 407 – 418 .

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.