208
Views
12
CrossRef citations to date
0
Altmetric
Original Articles

Physiological Responses and Tolerance Threshold to Cadmium Contamination in Eremochloa Ophiuroides

, , &
Pages 467-480 | Published online: 22 Dec 2011

REFERENCES

  • Aibibu , N , Liu , Y , Zeng , G , Wang , X , Chen , B , Song , H and Xu , L . 2010 . Cadmium accumulation in vetiveria zizanioides and its effects on growth, physiological and biochemical characters . Bioresour Technol. , 101 : 6297 – 6303 .
  • An , YJ. 2004 . Soil ecotoxicity assessment using cadmium sensitive plants . Environ Pollut. , 127 ( 1 ) : 21 – 26 .
  • Baker , A JM , McGrath , S P , Reeves , R D and Smith , J AC . 2000 . “ Metal hyperaccumulator plants: A review of the ecology and physiology of a biological resource for phytoremediation of metal-polluted soils ” . In Phytoremediation of Contaminated Soil and Water , Edited by: Terry , N and Baelos , G . 85 – 107 . Boca Raton, FL : Lewis Publishers .
  • Baker , A M and Brooks , R R . 1989 . Terrestrial higher plants which hyperaccumulate metallic elements: A review of their distribution, ecology and phytochemistry . Biorecovery , 1 : 81 – 126 .
  • Barrs , H D and Weatherley , P E . 1962 . A re-examination of the relative turgidity technique for estimating water deficit in leaves . Aust J Biol Sci. , 15 : 413 – 428 .
  • Blum , A and Ebercon , A . 1981 . Cell membrane stability as a measurement of drought and heat tolerance in wheat . Crop Sci. , 21 : 43 – 47 .
  • Chaney , R L , Malik , M , Li , Y M , Brown , S L , Brewer , E P , Angle , J S and Baker , A JM . 1997 . Phytoremediation of soil metals . Curr Opin Biotech. , 8 : 279 – 284 .
  • Ci , D W , Jiang , D , Dai , T B and Cao , W X . 2009 . Effects of cadmium on plant growth and physiological traits in contrast wheat recombinant inbred lines differing in cadmium tolerance . Chemosphere , 77 ( 11 ) : 1620 – 1625 .
  • Das , P , Samantaray , S and Rout , G R . 1997 . Studies on cadmium toxicity in plants: A review . Environ Pollut. , 98 : 29 – 36 .
  • Di Cagno , R , Guidi , L , Stefani , A and Soldatini , G F . 1999 . Effects of cadmium on growth of Helianthus annuus seedlings: Physiological aspects . New Phytol. , 144 : 65 – 71 .
  • Doncheva , SN , Poschenrieder , C , Stoyanova , Zl , Georgieva , K , Velichkova , M and Barceló , J . 2009 . Silicon amelioration of manganese toxicity in Mn-sensitive and Mn-tolerant maize varieties . Environ Exp Bot. , 65 : 189 – 197 .
  • Dube , B K , Sinha , P , Shukla , K , Chatterjee , C , Pandeya , V K and Rai , A D . 2009 . Involvement of Excess Cadmium on Oxidative Stress and Other Physiological Parameters of Eggplant . J Plant Nutr. , 32 : 996 – 1004 .
  • Ehinger , L H and Parker , G R . 1979 . Tolerance of Andropogon scoparius to copper and zinc . New Phytol. , 83 : 175 – 180 .
  • Foy , CD. 1984 . “ Physiological effects of hydrogen, aluminium, and manganese toxicities in acid soil ” . In Soil Acidity and Liming , 2nd ed. , Agronomy Monograph N12, ASA-CSSA-SSSA Edited by: Adams , F . 57 – 97 . Madison, WI : n.p. .
  • Ghosh , M and Singh , S P . 2005 . A comparative study of cadmium phytoextraction by accumulator and weed species . Environ Pollut. , 133 : 365 – 371 .
  • Gupta , U C and Gupta , S C . 1998 . Trace element toxicity relationships to crop production and livestock and human health: Implications for management . Commun Soil Sci Plant Anal. , 29 : 1491 – 1522 .
  • Hernández-Allica , J , Becerril , J M and Garbisu , C . 2008 . Assessment of the phytoextraction potential of high biomass crop plants . Environ Pollut. , 152 : 32 – 40 .
  • Hiscox , J D and Israelstam , G F . 1979 . A method for the extraction of chlorophyll from leaf tissue without maceration . Can J Bot. , 52 : 332 – 334 .
  • Hogan , G D and Rauser , W E . 1979 . Tolerance and toxicity of cobalt, copper, nickel and zinc in clones of Agrostis gigantea . New Phytol. , 83 : 665 – 670 .
  • Hong , C L , Jia , Y B , Yang , X E , He , Z L and Stoffella , P J . 2008 . Assessing Lead Thresholds for Phytotoxicity and Potential Dietary Toxicity in Selected Vegetable Crops . Bull Environ Contam Toxicol. , 80 : 356 – 361 .
  • Krupa , Z and Baszynski , T . 1995 . Some aspects of heavy metals toxicity towards photosynthetic apparatus-direct and indirect effects on light and dark reactions . Acta Physiol Plant. , 17 : 177 – 190 .
  • Krzysztof , S and Gabriela , L P . 2008 . Thresholds of heavy-metal toxicity in cuttings of European black poplar (Populus nigra L.) determined according to antioxidant status of fine roots and morphometrical disorders . Sci Total Environ. , 390 : 86 – 96 .
  • Maestri , E , Marmiroli , M , Visioli , G and Marmiroli , N . 2010 . Metal tolerance and hyperaccumulation: Costs and trade-offs between traits and environment . Environ Exp Bot. , 68 ( 1 ) : 1 – 13 .
  • Marcum , K B , Anderson , S J and Engelke , M C . 1998 . Salt gland ion secretion: A salinity tolerance mechanism among five zoysia grass species . Crop Sci. , 3 : 806 – 810 .
  • McGrath , S P and Zhao , F J . 2003 . Phytoextraction of metals and metalloids from contaminated soils . Curr Opin Biotech. , 14 : 277 – 282 .
  • Miles , L J and Parker , G R . 1979 . The effect of soil-added cadmium on several plant species . J Environ Qual. , 8 : 229 – 232 .
  • Morris , K N and Shearman , R C . 2007 . “ NTEP turfgrass evaluation guidelines. [cited 21 July 2008] ” . Available from http://www.ntep.org/pdf/ratings.pdf
  • Padmaja , K , Prasad , D DK and Prasad , A RK . 1990 . Inhibit of chlorophyll synthesis in Phaseolus vulgaris L. seedlings by cadmium acetate . Photosynthetica , 24 : 399 – 405 .
  • Paschke , M W and Redente , E F . 2002 . Copper toxicity thresholds for important restoration grass species of the western United States . Environ Toxicol Chem. , 21 : 2692 – 2697 .
  • Paschke , M W , Redente , E F and Levy , D B . 2000 . Zinc toxicity thresholds for important reclamation grass species of the western United States . Environ Toxicol Chem. , 19 : 2751 – 2756 .
  • Paschke , M W , Valdecantos , A and Redente , E F . 2005 . Manganese toxicity thresholds for restoration grass species . Environ Pollut. , 135 : 313 – 322 .
  • Perfus-Barbeoch , L , Leonhardt , N , Vavasseur , A and Forestier , C . 2002 . Heavy metal toxicity: Cadmium permeates through calcium channels and disturbs the plant water status . Plant J. , 32 : 539 – 548 .
  • Pietrini , F , Iannelli , M A , Pasqualini , S and Massacci , A . 2003 . Interaction of cadmium with glutathione and photosynthesis in developing leaves and chloroplasts of Phragmites australis (Cav.) Trin. ex Steudel . Plant Physiol. , 133 : 829 – 837 .
  • Pongrac , P , Zhao , F J , Razinger , J , Zrimec , A and Regvara , M . 2009 . Physiological responses to Cd and Zn in two Cd/Zn hyperaccumulating Thlaspi species . Environ Exp Bot. , 66 ( 3 ) : 479 – 486 .
  • Prasad , MNV. 1995 . Cadmium toxicity and tolerance in vascular plants . Environ Exp Bot. , 35 : 525 – 545 .
  • Raskin , I and Ensley , B D . 2000 . “ Phytoremediation of toxic metals: Using plants to clean up the environment ” . New York : John Wiley & Sons Inc .
  • Reeves , R D and Baker , A JM . 1984 . Studies on metal up take by plants from serpentine and nonserpentine populations of Thlaspi goesingense Halacsy (Cruciferae) . New Phytol. , 98 : 191 – 204 .
  • Sanita , D I , Toppi , L and Gabbrielli , R . 1999 . Response to Cd in higher plants . Environ Exp Bot. , 41 : 105 – 130 .
  • Schutzendubel , A , Schwanz , P , Teichmann , T , Gross , K , Langenfeld-Heyser , R , Godbold , D L and Polle , A . 2001 . Cadmium-induced changes in antioxidative systems, hydrogen peroxide content, and differentiation in Scots pine roots . Plant Physiol. , 127 : 887 – 898 .
  • Symeonidis , L , McNeilly , T and Bradshaw , A D . 1985 . Differential tolerance of three cultivars of Agrostis capillaris L. to Cd, copper, lead, nickel and zinc . New Phytol. , 101 : 309 – 315 .
  • Tapia , Y , Cala , V , Eymar , E , Frutos , I , Gárate , A and Masaguer , A . 2011 . Phytoextraction of Cadmium by Four Mediterranean Shrub Species . Int J Phytorem. , 13 ( 6 ) : 567 – 579 .
  • Wei , S H , Zhou , Q X and Mathews , S . 2008 . A newly found cadmium accumulator—Taraxacum mongolicum . J Hazard Mater. , 159 ( 2–3 ) : 544 – 547 .
  • Wei , S H , Niu , R C , Srivastava , M , Zhou , Q X , Wu , Z J , Sun , T H , Hu , Y H and Li , Y M . 2009 . Bidens tripartite L.: A Cd-accumulator confirmed by pot culture and site sampling experiment . J Hazard Mater. , 170 ( 2–3 ) : 1269 – 1272 .
  • Wei , S H , Zhou , Q X , Wang , X , Zhang , K S , Guo , G L and Ma , L Q . 2005 . A newly-discovered Cd-hyperaccumulator Solanum nigrum L . Chin Sci Bull. , 50 ( 1 ) : 33 – 38 .
  • Wilkins , DA. 1978 . The measurement of tolerance to edaphic factors by means of root growth . New Phytol. , 80 : 623 – 633 .
  • Wu , F Z , Yang , W Q , Zhang , J and Zhou , L Q . 2010 . Cadmium accumulation and growth responses of a poplar (Populus deltoids × Populus nigra) in cadmium contaminated purple soil and alluvial soil . J Hazard Mater. , 177 ( 1–3 ) : 268 – 273 .
  • Yanqun , Z , Yuan , L , Jianjun , C , Haiyan , C and Li , Q . 2005 . Schvartz C. Hyperaccumulation of Pb, Zn and Cd in herbaceous grown on lead-zinc mining area in Yunnan, China . Environ Int. , 31 : 755 – 762 .
  • Ying , R R , Qiu , R L , Tang , Y T , Hu , P J , Qiu , H , Chen , H R , Shi , T H and Morel , J L . 2010 . Cadmium tolerance of carbon assimilation enzymes and chloroplast in Zn/Cd hyperaccumulator Picris divaricata . J Plant Physiol. , 167 ( 2 ) : 81 – 87 .
  • Zhang , S R , Chen , M Y , Li , T , Xu , X X and Deng , L J . 2010a . A newly found cadmium accumulator-Malva sinensis Cavan . J Hazard Mater , 173 ( 1–3 ) : 705 – 709 .
  • Zhang , X C , Zhang , S R , Xu , X X and Deng , L J . 2010b . Tolerance and accumulation characteristics of cadmium in Amaranthus hybridus L . J Hazard Mater. , 180 ( 1–3 ) : 303 – 308 .
  • Zhu , Y H . 2007 . “ Lead tolerance and accumulation in turfgrass [Master Thesis] ” . P.R. China : Yangzhou University .
  • Zu , Y Q , Li , Y , Christian , S , Laurent , L and Lin , F . 2004 . Accumulation of Pb, Cd, Cu and Zn in plants and hyperaccumulator choice in Lanping lead-zinc mine area . China Environ Int. , 30 : 567 – 576 .

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.