153
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

Differential Responses of Anti-Oxidative Enzymes to Aluminum Stress in Tolerant and Sensitive Soybean Genotypes

, , , , , , , , , & show all
Pages 1255-1270 | Received 24 Sep 2007, Accepted 25 Mar 2009, Published online: 13 Jul 2009

REFERENCES

  • Azevedo Neto , A. D. , Prisco , J. T. , Enéas-Filho , J. , Abreu , C. E. B. and Gomes-Filho , E. 2006 . Effect of salt stress on antioxidative enzymes and lipid peroxidation in leaves and roots of salt-tolerant and salt-sensitive maize genotypes . Environmental and Experimental Botany , 56 : 87 – 94 .
  • Babourina , O. , Ozturk , L. , Cakmak , I. and Rengel , Z. 2006 . Reactive oxygen species production in wheat roots is not linked with changes in H+ fluxes during acidic and aluminum stresses . Plant Signaling and Behavior , 1 : 70 – 75 .
  • Badawi , G. H. , Yamauchi , Y. , Shimada , E. , Sasaki , R. , Kawano , N. and Tanaka , K. 2004 . Enhanced tolerance to salt stress and water deficit by overexpressing superoxide dismutase in tobacco (Nicotiana tabacum) chloroplasts . Plant Science , 166 : 919 – 928 .
  • Bennet , R. and Breen , C. M. 1991 . The aluminum signal: New dimensions to mechanisms of aluminum tolerance . Plant and Soil , 134 : 153 – 166 .
  • Bray , E. A. , Bailey-Serres , J. and Weretilnyk , E. 2000 . “ Plant responses to mineral toxicity ” . In Biochemistry & Moiecular Biology of Plants , Edited by: Buchanan , B. B. , Gruissem , W. and Jones , R. L. 1239 – 1247 . Rockville, MD : American Society of Plant Physiologists .
  • Cakmak , I. and Horst , W. J. 1991 . Effect of aluminum on lipid peroxidation, superoxide dismutase, catalase, and peroxidase activities in root tips of soybean (Glycine max) . Physiologia Plantarum , 83 : 463 – 468 .
  • Darkó , É. , Ambrus , H. , Stefanovits-Bányai , É. , Fodor , J. , Bakos , F. and Barnabás , B. 2004 . Aluminum toxicity, Al tolerance and oxidative stress in an Al-sensitive wheat genotype and in Al-tolerant lines developed by in vitro microspore selection . Plant Science , 166 : 583 – 591 .
  • Degenhardt , J. , Larsen , P. B. , Howell , S. H. and Kochian , L. V. 1998 . Aluminum resistance in the Arabidopsis mutant alr-104 is caused by an aluminum-induced increase in rhizosphere pH . Plant Physiology , 117 : 19 – 27 .
  • Devi , S. R. , Yamamoto , Y. and Matsumoto , H. 2003 . An intracellular mechanism of aluminum tolerance associated with high antioxidant status in cultured tobacco cells . Journal of Inorganic Biochemistry , 97 : 59 – 68 .
  • Di , J. W. and Bi , S. P. 2003 . Aluminum ions accelerated the oxidative stress of copper mediated melanin formation . Spectrochimica Acta Part A , 59 : 3075 – 3083 .
  • Dong , D. F. , Peng , X. X. and Yan , X. L. 2004 . Organic acid exudation induced by phosphorus deficiency and/or aluminum toxicity in two contrasting soybean genotypes . Physiologia Plantarum , 122 : 190 – 199 .
  • Ezaki , B. , Katsuhara , M. , Kawamura , M. and Matsumoto , H. 2001 . Different mechanisms of four aluminum (Al)-resistant transgenes for Al toxicity in Arabidopsis . Plant Physiology , 127 : 918 – 927 .
  • Ezaki , B. , Tugita , S. and Matsumoto , H. 1996 . Expression of a moderately anionic peroxidase is induced by aluminum treatment in tobacco cells: Possible involvement of peroxidase isozymes in aluminum ion stress . Physiologia Plantarum , 96 : 21 – 28 .
  • Giannopolitis , C. N. and Ries , S. K. 1977 . Superoxide dismutases . Plant Physiology , 59 : 309 – 314 .
  • Havas , M. 1986 . A hematoxylin staining technique to locate sites of aluminum binding in aquatic plants and animals . Water Air Soil Pollution , 30 : 735 – 741 .
  • Hino , T. , Kiyoka , C. and Sakurai , H. 1997 . Aluminum enhances Fe2+-induced lipid peroxidation . Journal of Inorganic Biochemistry , 67 : 375
  • Ikegawa , H. , Yamamoto , Y. and Matsumoto , H. 2000 . Responses to aluminum of suspension-cultured tobacco cells in a simple calcium solution . Soil Science and Plant Nutrition , 46 : 503 – 514 .
  • Janero , D. R. 1990 . Malondialdehyde and thiobarbituric acid reactivity as diagnostic indices of lipid peroxidation and peroxidative tissue injury . Free Radical Biology and Medicine , 9 : 515 – 540 .
  • Jorge , R. A. , Menossi , M. and Arruda , P. 2001 . Probing the role of calmodulin in Al toxicity in maize . Phytochemistry , 58 : 415 – 422 .
  • Kato , M. and Shimizu , S. 1987 . Chlorophyll metabolism in higher plants. VII. Chlorophyll degradation in senescing tobacco leaves; phenolic-dependent peroxidative degradation . Canadian Journal of Botany , 65 : 729 – 735 .
  • Kidd , P. S. , Llugany , M. , Poschenrieder , C. , Gunse , B. and Barcelo , J. 2001 . The role of root exudates in aluminum resistance and silicon-induced amelioration of aluminum toxicity in three varieties of maize (Zea mays L.) . Journal of Experimental Botany , 52 : 339 – 352 .
  • Kochian , L. V. 1995 . Cellular mechanisms of aluminum toxicity and resistance in plants . Annual Review of Plant Physiology and Plant Molecular Biology , 46 : 237 – 260 .
  • Kochian , L. V. , Hoekenga , O. A. and Pineros , M. A. 2004 . How do crop plants tolerate acid soils? Mechanisms of aluminum tolerance and phosphorous efficiency . Annual Review of Plant Biology , 55 : 459 – 493 .
  • Kollmeier , M. , Felle , H. H. and Horst , W. J. 2000 . Genotypical differences in aluminum resistance of maize are expressed in the distal part of the transition zone. Is reduced basipetal auxin flow involved in inhibition of root elongation by aluminum? . Plant Physiology , 122 : 945 – 956 .
  • Liang , Y. , Chen , Q. , Liu , Q. , Zhang , W. and Ding , R. 2003 . Exogenous silicon (Si) increases antioxidant enzyme activity and reduces lipid peroxidation in roots of salt-stressed barley (Hordeum vulgare L.) . Journal of Plant Nutrition , 160 : 1157 – 1164 .
  • Lin , X. Y. and Wang , J. L. 1993 . “ Mechanisms of adaptation to aluminum toxicity in plants ” . In Ecological Physiology and Genetics of Plant Nutrition , Edited by: Zhang , F. S. 248 – 290 . Beijing : China Science and Technology Press .
  • Mittova , V. , Tal , M. , Volokita , M. and Guy , M. 2002 . Salt stress induces up-regulation of an efficient chloroplast antioxidant system in the salt tolerant wild tomato species Lycopersicon pennellii but not in the cultivated species . Physiologia Plantarum , 115 : 393 – 400 .
  • Nakano , Y. and Asada , K. 1981 . Hydrogen peroxide is scavenged by ascorbate-specific peroxidases in spinach chloroplasts . Plant Cell Physiology , 22 : 867 – 880 .
  • Narasimhamoorthy , B. , Blancaflor , E. B. , Bouton , J. H. , Payton , M. E. and Sledge , M. K. 2007 . A comparison of hydroponics, soil, and root staining methods for evaluation of aluminum tolerance in Medicago truncatula (Barrel Medic) germplasm . Crop Science , 47 : 321 – 328 .
  • Patricia , R. S. B. , Marcelo , M. and Renato , A. J. 2003 . Aluminum-induced oxidative stress in maize . Phytochemistry , 62 : 181 – 189 .
  • Pompella , A. and Maellaro , E. 1987 . Histochemical detection of lipid peroxidation in the liver of bromobenzene-poisoned mice . The American Journal of Pathology , 129 : 295 – 301 .
  • Richards , K. D. , Schott , E. J. , Sharma , Y. K. , Devis , K. R. and Gardner , R. C. 1998 . Aluminum induces oxidative stress genes in . Arabidopsis thaliana. Plant Physiology , 116 : 409 – 418 .
  • Ryan , P. R. , DiTomaso , J. M. and Kochian , L. V. 1993 . Aluminum toxicity in roots: An investigation of spatial sensitivity and the role of the root cap . Journal of Experimental Botany , 44 : 437 – 446 .
  • Sivaguru , M. and Horst , W. J. 1998 . The distal part of the transition zone is the most aluminum-sensitive apical root zone of maize . Plant Physiology , 116 : 155 – 163 .
  • Snowden , K. C. and Gardner , R. C. 1993 . Five genes induced by aluminum in wheat (Triticum aestivum) roots . Plant Physiology , 103 : 855 – 861 .
  • Tsuyosh , T. , Maiko , K. , Satoshi , M. and Etsuro , Y. 2002 . Aluminum rapidly inhibits cellulose synthesis in roots of barley and wheat seedlings . Journal of Plant Physiology , 159 : 17 – 23 .
  • Yamamoto , Y. , Kobayashi , Y. and Matsumoto , H. 2001 . Lipid peroxidation is an early symptom triggered by aluminum, but not the primary cause of elongation inhibition in pea roots . Plant Physiology , 125 : 199 – 208 .
  • Yang , Q. , Wang , Y. , Zhang , J. , Shi , W. , Qian , C. and Peng , X. X. 2007 . Identification of aluminum-responsive proteins in rice roots by a proteomic approach: Cysteine synthase as a key player in Al response . Proteomics , 7 : 737 – 749 .
  • Zhen , Y. , Qi , J. L. , Wang , S. S. , Su , J. , Xu , G. H. , Zhang , M. S. , Miao , L. , Peng , X. X. , Tian , D. and Yang , Y. H. 2007 . Comparative proteome analysis of differentially expressed proteins induced by Al toxicity in soybean . Physiologia Plantarum , 131 : 542 – 554 .

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.