233
Views
37
CrossRef citations to date
0
Altmetric
Original Articles

ISOLATION AND IDENTIFICATION OF SPECIFIC ROOT EXUDATES IN ELEPHANTGRASS IN RESPONSE TO MOBILIZATION OF IRON- AND ALUMINUM-PHOSPHATES

, , , &
Pages 1117-1130 | Published online: 16 Aug 2006

REFERENCES

  • Passsos , L. P. , Vidigal , M. C. , Pereira , A. V. , Ferreira , R. P. and Verneque , R. S. 1999 . Responses of Elephantgrass to Nutrient Solution pH Levels . J. Plant Nutr. , 22 ( 4 ) : 701 – 708 .
  • Shen , H. , Wang , X. and Cao , Z. H. 1999 . Physiological Response of Different Plants to Phosphorus Deficiency . J. Nanjing Normal Univ. (in Chinese) , 22 ( 3 ) : 214 – 219 .
  • Hoffland , E. , Findenegg , G. R. and Nelemans , J. A. 1989 . Solubilization of Rock Phosphate by Rape. II. Local Root Exudation of Organic Acids as a Response to P-starvation . Plant Soil , 113 : 161 – 165 .
  • Gardner , W. K. , Barber , D. A. and Parbery , D. G. 1982 . The Acquisition of Phosphorus by Lupinus albus L. III. The Probable Mechanism by Which Phosphorus Movement in the Soil/root Interface is Enhanced . Plant Soil , 70 : 107 – 124 .
  • Schenk , M. K. and Barber , S. A. 1979 . Root Characteristics of Corn Genotypes as Related to P Uptake . Agron. J. , 71 : 921 – 924 .
  • Ae , N. , Arihara , J. , Okada , K. , Yoshihara , T. and Johansen , C. 1990 . Phosphorus Uptake by Pigeonpea and Its Role in Cropping Systems of the Indian Subcontinent . Science , 248 : 477 – 480 .
  • Fox , T. R. , Comerford , N. B. and McFee , W. W. 1990 . Phosphorus and Aluminum Release from a Spodic Horizon Mediated by Organic Acids . Soil Sci. Soc. Am. J. , 54 : 1763 – 1767 .
  • Zhang , F. S. , Treeby , M. , Römheld , V. and Marschner , H. 1991 . Mobilization of Iron by Phytosiderophores as Affected by Other Micronutrients . Plant Soil , 130 : 173 – 178 .
  • Otani , T. , Ae , N. and Tanaka , H. 1996 . Phosphorus Uptake Mechanisms of Crops Grown in Soils with Low P Status. II. Significance of Organic Acids in Root Exudates of Pigeapea . Soil Sci. Plant Nutr. , 42 ( 3 ) : 553 – 560 .
  • Mori , S. and Nishizawa , N. 1987 . Dynamic State of Mugineic Acid and Analogous Phytosiderophores in Fe-deficient Barley . J. Plant Nutri. , 10 : 1003 – 1011 .
  • Mench , M. , Morel , L. and Guckert , A. 1987 . Metal Binding Properties of High Molecular Weight Soluble Exudates from Maize (Zea mays L.) . Root. Biol. Fert. Soil , 3 : 165 – 169 .
  • Hoffland , E. , Boogaard , R. , Nelemans , J. A. and Findenegg , G. R. 1992 . Biosynthesis and Root Exudation of Citric and Malic Acids in Phosphate-starved Rape Plants . New Phytol. , 122 : 675 – 680 .
  • Mullette , K. J. , Hannon , N. J. and Elliott , A. G.L. 1974 . Insoluble Phosphorus Usage by Eucalyptus . Plant Soil , 41 : 199 – 205 .
  • Kamh , M. , Horst , W. J. , Amer , F. , Mostafa , H. and Maier , P. 1999 . Mobilization of Soil and Fertilizer Phosphate by Cover Crops . Plant Soil , 211 : 19 – 27 .
  • Murphy , J. and Riley , J. P. 1962 . A Modified Single Solution Method for the Determination of Phosphate in Natural Waters . Anal. Chem. Acta , 27 : 31 – 36 .
  • 1988 . “ SAS Institute ” . In SAS/SAST User's Guide , Release Edition 6.03 Cary, NC : SAS Institute .
  • Graham , J. H. , Leonard , R. T. and Menge , J. A. 1981 . Membrane Mediated Decrease in Root Exudation Responsible for Phosphorus Inhibition of Vesiculararbuscular Mycorrhiza Formation . Plant Physiol. , 68 : 548 – 552 .
  • Ohwaki , Y. and Hirata , H. 1992 . Differences in Carboxylic Acid Exudation Among P-starved Leguminous Crops in Relation to Carboxylic Acid Contents in Plant Tissues and Hospholipid Level in Roots. Soil Sci . Plant Nutr. , 38 ( 2 ) : 235 – 243 .
  • Zhang , F. S. , Ma , J. and Cao , Y. P. 1997 . Phosphorus Deficiency Enhances Root Exudation of Low-molecular Weight Organic Acids and Utilization of Sparingly Soluble Inorganic Phosphorus by Radish (Raphanus sativus L.) and Rape (Brassica napus L.) Plants . Plant Soil , 196 : 261 – 264 .
  • Ae , N. , Arihara , J. , Okada , K. , Yoshihara , T. , Otani , T. and Johansen , C. 1993 . “ The Role of Piscidic Acid Secreted by Pigonpea Roots Grown in an Alfisol with Low-P Fertility ” . In Genetic Aspects of Plant Mineral Nutrition Edited by: Randall , P. J. , Delhaize , E. , Richards , R. A. and Munns , R. 270 – 288 . Dordrecht, , The Netherlands : Kluwer Academic Publishers .
  • Kepert , D. G. , Robson , A. D. and Posner , A. M. 1979 . “ The Effect of Organic Root Products on the Availability of Phosphorus to Plants ” . In The Soil Root Interface Edited by: Harley , J. L. and Russell , R. S. 115 – 120 . New York : Academic Press .
  • Neumann , G. and Römheld , V. 1999 . Root Excretion of Carboxylic Acids and Protons in Phosphorus-deficient Plants . Plant Soil , 211 : 121 – 130 .
  • Nye , P. H. 1984 . “ pH Changes and Phosphate Solubilization Near Roots: An Example of Coupled Diffusion Process ” . In Roots, Nutrient and Water- Influx, and Plant Growth , ASA Spec. Publ. 49 Edited by: Barber , S. A. and Bould , D. R. 79 – 100 . Madison, WI : American Society of Agronomy .
  • Subbarao , G. V. , Ae , . and Otani , T. 1997 . Genotypic Variation in Iron-, Aluminum-Phosphate Solubilizing Activity of Pigeonpea Root Exudates Under P Deficient Conditions . Soil Sci. Plant Nutr. , 43 ( 2 ) : 295 – 305 .
  • Traina , S. J. , Sposito , G. , Hesterberg , D. and Kafkafi , U. 1986 . 1986. Effect of pH and Organic Acids on Orthophosphate Solubility in an Acidic Montmorillonilic Soil . Soil Sci. Soc. Am. J. , 50 : 45 – 52 .

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.