300
Views
33
CrossRef citations to date
0
Altmetric
Original Articles

MAIZE RESPONSE TO PHOSPHATE ROCK AND ARBUSCULAR MYCORRHIZAL FUNGI IN ACIDIC SOIL

&
Pages 231-254 | Published online: 05 Feb 2007

REFERENCES

  • Marschner , H. 1991 . Mechanisms of Adaptation of Plants to Acid Soils . Plant Soil , 134 : 1 – 20 .
  • Clark , R. B. 1997 . Arbuscular Mycorrhizal Adaptation, Spore Germination, Root Colonization, and Host Plant Growth and Mineral Acquisition at Low pH . Plant Soil , 192 : 15 – 22 .
  • Clark , R. B. , Zeto , S. K. and Zobel , R. W. 1999 . Arbuscular Mycorrhizal Fungal Isolate Effectiveness on Growth and Root Colonization of Panicum virgatum in Acidic Soil . Soil Biol. Biochem. , 31 : 1757 – 1763 .
  • Clark , R. B. , Zobel , R. W. and Zeto , S. K. 1999 . Effects of Mycorrhizal Fungus Isolates on Mineral Acquisition by Panicum virgatum in Acidic Soil . Mycorrhiza , 9 : 167 – 176 .
  • Koslowsky , S. D. and Boerner , R. E. Jr. 1989 . Interactive Effects of Aluminum, Phosphorus and Mycorrhizae on Growth and Nutrient Uptake of Panicum virgatum L. (Poaceae) . Environ. Pollut. , 61 : 107 – 125 .
  • Maddox , J. J. and Soileau , J. M. 1991 . “ Effects of Phosphate Fertilization, Lime Amendments, and Inoculation with VA–mycorrhizal Fungi on Soybeans in an Acid Soil ” . In Plant-Soil Interactions at Low pH Edited by: Wright , R. J. , Baligar , V. C. and Murrmann , R. P. 215 – 225 . Dordrecht , , Netherlands : Kluwer Academic Publishers .
  • Mendoza , R. E. and Pagani , E. A. 1997 . Influence of Phosphorus Nutrition on Mycorrhizal Growth Response and Morphology of Mycorrhizae in Lotus ternuis . J. Plant Nutr. , 20 : 625 – 639 .
  • Sylvia , D. M. and Williams , S. E. 1992 . “ Vesicular–Arbuscular Mycorrhizal and Environmental stress ” . In Mycorrhizae in Sustainable Agriculture Edited by: Bethlenfalvay , G. J. and Linderman , R. G. 101 – 124 . Madison , WI : American Society of Agronomy .
  • Bethlenfalvay , G. J. 1992 . “ Mycorrhizae and Crop Productivity ” . In Mycorrhizae in Sustainable Agriculture Edited by: Bethlenfalvay , G. J. and Linderman , R. G. 1 – 27 . Madison , WI : American Society of Agronomy .
  • Johnson , N. C. and Plfeger , F. L. 1992 . “ Vesicular–Arbuscular Mycorrhizae and Cultural Stresses ” . In Mycorrhizae in Sustainable Agriculture Edited by: Bethlenfalvay , G. J. and Linderman , R. G. 71 – 99 . Madison , WI : American Society of Agronomy .
  • Barea , J. M. and Azcón-Aguilar , C. 1983 . Mycorrhizas and Their Significance in Nodulating Nitrogen-Fixing Plants . Adv. Agron. , 36 : 1 – 54 .
  • Bolan , N. S. 1991 . A Critical Review on the Role of Mycorrhizal Fungi in the Uptake of Phosphorus by Plants . Plant Soil , 134 : 189 – 207 .
  • Hetrick , B. A.D. 1989 . “ Acquisition of Phosphorus by VA Mycorrhizal and the Growth Response of Their Host Plants ” . In Nitrogen, Phosphorus, and Sulfur Utilization by Fungi Edited by: Boddy , L. , Marchant , R. and Reid , D. J. 205 – 226 . New York : Cambridge University Press .
  • Rajan , S. S.S. , Watkinson , J. H. and Sinclair , A. G. 1996 . Phosphate Rocks for Direct Application to Soils . Adv. Agron. , 57 : 77 – 159 .
  • Marschner , H. and Dell , B. 1994 . Nutrient Uptake in Mycorrhizal Symbiosis . Plant Soil , 159 : 89 – 102 .
  • Clark , R. B. and Zeto , S. K. 1996 . Mineral Acquisition by Mycorrhizal Maize Grown on Acid and Alkaline Soil . Soil Biol. Biochem. , 28 : 1495 – 1503 .
  • Siqueira , J. O. , Rocha , W. F. Jr. , Oliveira , E. E. and Colozzi-Filho , A. 1990 . The Relationship Between Vesicular–Arbuscular Mycorrhiza and Lime: Associated Effects on the Growth and Nutrition of Brachiaria Grass . Biol. Fert. Soils , 10 : 65 – 71 .
  • Howeler , R. H. , Sieverding , E. and Saif , S. R. 1987 . Practical Aspects of Mycorrhizal Technology in Some Tropical Crops and Pastures . Plant Soil , 100 : 249 – 283 .
  • Ryan , M. H. , Chilvers , G. A. and Dumaresq , D. C. 1994 . Colonization of Wheat by VA–Mycorrhizal Fungi was Found to be Higher on a Farm Managed in an Organic Manner Than on a Conventional Neighbour . Plant Soil , 160 : 33 – 40 .
  • Antunes , V. and Cardoso , E. J.B.N. 1991 . Growth and Nutrient Status of Citrus Plants as Influenced by Mycorrhiza and Phosphorus Application . Plant Soil , 131 : 11 – 20 .
  • Manjunath , A. , Hue , N. V. and Habte , M. 1989 . Response of Leucaena leucocephala to Vesicular–Arbuscular Mycorrhizal Colonization and Rock Phosphate Fertilization in an Oxisol . Plant Soil , 114 : 127 – 134 .
  • Sieverding , E. and Galvez , A. L. 1988 . Soils Phosphate Sources Affect Performance of VA Mycorrhizal Fungi with Cassava . Angewandte Botanik , 62 : 283 – 294 .
  • Graham , J. H. and Timmer , L. W. 1985 . Rock Phosphate as a Source of Phosphorus for Vesicular–Arbuscular Mycorrhizal Development and Growth of Citrus in a Soilless Medium . J. Am. Hort. Sci. , 110 : 489 – 492 .
  • Toro , M. , Azcon , R. and Barea , J.-M. 1997 . Improved of Arbuscular Mycorrhiza Development by Inoculation of Soil with Phosphate-Solubilizing Rhizobacteria and Improve Rock Phosphate Bioavailablity (32P) and Nutrient Cycling . Appl. Environ. Microbiol. , 63 : 4408 – 4412 .
  • Pairunan , A. K. , Robson , A. D. and Abbott , L. K. 1980 . The Effectiveness of Vesicular–Arbuscular Mycorrhiza in Increasing Growth and Phosphorus Uptake of Subterranean Clover from Phosphorus Sources of Different Solubilities . New Phytol. , 84 : 327 – 338 .
  • Morton , J. B. , Bentivenga , S. P. and Wheeler , W. W. 1993 . Germ Plasm in the International Collection of Arbuscular and Vesicular–Arbuscular Mycorrhizal Fungi (INVAM) and Procedures for Culture Development, Documentation and Storage . Mycotaxon , 48 : 491 – 528 .
  • Phillips , J. M. and Hayman , D. S. 1970 . Improved Procedures for Clearing Roots and Staining Parasitic and Vesicular–Arbuscular Mycorrhizal Fungi for Rapid Assessment of Infection . Trans. Brit. Mycol. Soc. , 55 : 158 – 161 .
  • Tennant , D. 1975 . A Test of a Modified Line Intersect Method of Estimating Root Length . J. Ecol. , 63 : 995 – 1001 .
  • He , Z. L. , Baligar , V. C. , Martens , D. C. and Kemper , W. D. 1996 . Factors Affecting Phosphate Rock Dissolution in Acid Soil Amended with Liming Materials and Cellulose . Soil Sci. Soc. Am. J. , 60 : 1596 – 1601 .
  • Kingston , H. M. and Jassie , L. B. 1988 . Introduction to Microwave Sample Preparation 263 Washington , DC : American Chemical Society .
  • Williams , R. F. 1946 . The Physiology of Plant Growth with Special Reference to the Concept of Net Assimilation Rate . Ann. Bot. N.S. , 10 : 41 – 72 .
  • Nurlaeny , N. , Marschner , H. and George , E. 1996 . Effects of Liming and Mycorrhizal Colonization on Soil Phosphate Depletion and Phosphate Uptake by Maize (Zea mays L.) and Soybean (Glycine max L.) Grown in Two Tropical Acid Soils . Plant Soil , 181 : 275 – 285 .
  • Diederichs , C. 1991 . Influence of Different P Sources on the Efficiency of Several Tropical Endomycorrhizal Fungi in Promoting the Growth of Zea mays . L. Fert. Res. , 30 : 39 – 46 .
  • 1989 . Influence of Different P Sources on the Efficiency of Several Tropical Endomycorrhizal Fungi in Promoting the Growth of Edicago sativa . L. Biol. Fert. Soil , 8 : 61 – 65 .
  • Khasawneh , F. E. and Doll , E. C. 1978 . The Use of Phosphate Rock for Direct Application to Soils . Adv. Agron. , 30 : 159 – 206 .
  • Stribley , D. P. , Tinker , P. B. and Snellgrove , R. C. 1980 . Effect of Vesicular–Arbuscular Mycorrhizal Fungi on the Relations of Plant Growth, Internal Phosphorus Concentrations and Soil Phosphate Aanalyses . J. Soil Sci. , 31 : 655 – 672 .
  • Arias , I. , Koomen , I. , Dodd , J. C. , White , R. P. and Hayman , D. S. 1991 . Growth Responses of Mycorrhizal and NonMycorrhizal Tropical Forage Species to Different Levels of Soil Phosphate . Plant Soil , 132 : 253 – 260 .
  • Blal , B. , Morel , C. , Gianinazzi-Pearson , V. , Fardeau , J. C. and Gianinazzi , S. 1990 . Influence of Vescular–Arbuscular Mycorrhizae on Phosphate Fertilizer Efficiency in Two Tropical Acid Soils Planted with Micropropagated Oil Palm (Elaeis guneensis Jacq.) . Biol. Fert. Soils , 9 : 43 – 48 .
  • Fabig , B. , Moawad , A. M. and Achtnich , W. 1989 . Effect of VA Mycorrhiza on Dry Weight and Phosphorus Content in Shoots of Cereal Crops Fertilized with Rock Phosphate at Different Soil pH and Temperature Levels . Z. Pflanzenernaeh. Bodenk. , 152 : 255 – 260 .
  • Koide , R. T. and Li , M. 1990 . On Host Regulation of the Vesicular–Arbuscular Mycorrhizal Symbiosis . New Phytol. , 114 : 59 – 74 .
  • Bolan , N. S. , Robson , A. D. and Barrow , N. J. 1984 . Increasing Phosphorus Supply Can Increase the Rnfection of Plant Roots by Vesicular–Arbuscular Mycorrhizal Fungi . Soil Biol. Biochem. , 16 : 419 – 420 .
  • Kothari , S. K. , Marschner , H. and Romheld , V. 1991 . Contribution of the VA Mycorrhizal Hyphae in Acquisition of Phosphorus and Zinc by Maize Grown in a Calcareous Soil . Plant Soil , 131 : 177 – 185 .
  • Ahiabor , B. D. and Hirata , H. 1994 . Characteristic Responses of Three Tropical Legumes to the Inoculation of Two Species of VAM Fungi in Andosol Soils with Different Fertilities . Mycorrhiza , 5 : 63 – 70 .
  • El-Kherbawy , M. , Angle , J. S. , Heggo , R. L. and Chaney , A. 1989 . Soil pH, Rhizobia, and Vesicular–Arbuscular Inoculation Effects on Growth and Heavy Metal Uptake of Alfalfa (Medicago sativa L.) . Biol. Fert. Soil , 8 : 61 – 65 .
  • Medeiros , C. A.B. , Clark , R. B. and Ellis , J. R. 1994 . Growth and Nutrient Uptake of Sorghum Cultivated with Vesicular–Arbuscular Mycorrhiza Isolates at Varying pH . Mycorrhiza , 4 : 185 – 191 .
  • Khalil , S. , Loynachan , T. E. and Tabatabai , M. A. 1994 . Mycorrhizal Dependency and Nutrient Uptake by Improved and Unimproved Corn and Sorghum Cultivars . Agron. J. , 86 : 949 – 958 .
  • Sharma , A. K. , Srivastava , P. C. , Johri , B. N. and Rathore , V. S. 1992 . Kinetics of Zinc Uptake by Mycorrhizal (VAM) and NonMycorrhizal Corn (Zea mays L.) Roots . Biol. Fert. Soil , 13 : 206 – 210 .
  • Jarrell , W. M. and Beverly , R. B. 1981 . The Dilution Effect in Plant Nutrition Studies . Adv. Agron. , 34 : 197 – 224 .
  • Clark , R. B. and Zeto , S. K. 1996 . Growth and root colonization of mycorrhizal maize grown on acid and alkaline soil . Soil Biol. Biochem. , 28 : 1505 – 1511 .
  • Medeiros , C. A.B. , Clark , R. B. and Ellis , J. R. 1995 . “ Effects of Excess Aluminum and Manganese on Growth and Phosphorus Nutrition of Mycorrhizal Sorghum Grown Under Acidic Conditions ” . In Plant–Soil Interactions at Low pH Edited by: Date , R. A. , Grundon , N. J. , Rayment , G. E. and Probert , M. E. 193 – 199 . Dordrecht , , Netherlands : Kluwer Academic Publishers .

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.