209
Views
32
CrossRef citations to date
0
Altmetric
Original Articles

DIFFERENCES AMONG MYCORRHIZAL FUNGI FOR MINERAL UPTAKE PER ROOT LENGTH OF SWITCHGRASS GROWN IN ACIDIC SOIL

Pages 1753-1772 | Published online: 14 Feb 2007

REFERENCES

  • Foy , C. D. 1992 . Soil Chemical Factors Limiting Plant Root Growth. . Adv. Soil Sci. , 19 : 87 – 149 .
  • Marschner , H. 1991 . Mechanisms of Adaptation of Plants to Acid Soils. . Plant Soil , 134 : 1 – 20 .
  • Bethlenfalvay , G. J. 1992 . “ Mycorrhizae in Crop Productivity. ” . In InMycorrhizae in Sustainable Agriculture Edited by: Bethlenfalvay , G. J. and Linderman , R. G. 1 – 27 . Madison, WI : Am. Soc. Agron.: . Spec. Publ. No. 54
  • Linderman , R. G. 1992 . “ Vesicular-Arbuscular Mycorrhizae and Soil Microbial Interactions. ” . In InMycorrhizae in Sustainable Agriculture Edited by: Bethlenfalvay , G. J. and Linderman , R. G. 45 – 70 . Madison, WI : Am. Soc. Agron.: . Spec. Publ. No. 54
  • Linderman , R. G. 1994 . “ Role of VAM Fungi in Biocontrol. ” . In InMycorrhizae and Plant Health Edited by: Pfleger , F. L. and Linderman , R. G. 1 – 25 . St Paul, MN : Am. Phytopath. Soc.: .
  • Sieverding , E. 1991 . Vesicular-Arbuscular Mycorrhiza Management in Tropical Agrosystems Eschborn, , Germany Deutsche Gesellschaft Technische Zusammenarbeit:
  • Sylvia , D. M. and Williams , S. E. 1992 . “ Vesicular-Arbuscular Mycorrhizae and Environmental Stress. ” . In InMycorrhizae in Sustainable Agriculture Edited by: Bethlenfalvay , G. J. and Linderman , R. G. 101 – 124 . Madison, WI : Am. Soc. Agron.: . Spec. Publ. No. 54
  • Bethlenfalvay , G. J. and Franson , R. L. 1989 . Manganese Toxicity Alleviated by Mycorrhizae in Soybean. . J. Plant Nutr. , 12 : 953 – 970 .
  • 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 .
  • 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 .
  • 1999 . Arbuscular Mycorrhizal Fungal Isolate Effectiveness on Growth and Root Colonization ofPanicum virgatumin Acidic Soil. . Soil Biol. Biochem. , 31 : 1757 – 1763 .
  • Clark , R. B. , Zobel , R. W. and Zeto , S. K. 1999 . Effect of Mycorrhizal Fungal Isolates on Mineral Acquisition byPanicum virgatumin Acidic Soil. . Mycorrhiza , 9 : 167 – 176 .
  • 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 .
  • Maddox , J. J. and Soileau , J. M. 1991 . Effect of Phosphate Fertilization, Lime Amendments, and Inoculation with VA-Mycorrhizal Fungi on Soybeans in an Acid Soil. . Plant Soil , 134, 83–93
  • Medeiros , C.A. B. , Clark , R. B. and Ellis , J. R. 1994 . Effects of Excess Aluminum on Mineral Uptake in Mycorrhizal Sorghum. J. . Plant Nutr. , 17 : 1399 – 1416 .
  • Medeiros , C.A. B. , Clark , R. B. and Ellis , J. R. 1994 . Effects of Excess Manganese on Mineral Uptake in Mycorrhizal Sorghum. . J. Plant Nutr. , 17, 2203–2219
  • Nurlaeny , N. , Marschner , H. and George , E. 1996 . Effects of Liming and Mycorrhizal Colonization on Soil Phosphate Depletion and Phosphate Uptake by Maize (Zea maysL.) and Soybean (Glycine maxL.) Grown in Two Tropical Acid Soils. . Plant Soil , 181 : 275 – 285 .
  • Raju , P. S. , Clark , R. B. , Ellis , J. R. and Maranville , J. W. 1988 . Effects of VA Mycorrhizae on Growth and Mineral Uptake of Sorghum Grown at Varied Levels of Soil Acidity. Commun. . Soil Sci. Plant Anal. , 19 : 919 – 931 .
  • Saif , S. R. 1987 . Growth Responses of Tropical Forage Plant Species to Vesicular-Arbuscular Mycorrhizae. . Plant Soil , 97 : 25 – 35 .
  • Schenck , N. C. and Siqueira , J. O. 1987 . “ Ecology of VA Mycorrhizal Fungi in Temperate Agroecosystems. ” . In InMycorrhizae in the Next Decade, Practical Applications and Research Priorities Edited by: Sylvia , D. M. , Hung , L. L. and Graham , J. H. 2 – 4 . Gainesville, FL : Univ. Florida: .
  • Clark , R. B. and Duncan , R. R. 1992 . “ Selection of Plants to Tolerate Soil Salinity, Acidity, and Mineral Deficiencies. ” . In InInternational Crop Science Edited by: Buxton , D. R. , Shibles , R. , Forsberg , R. A. , Blad , B. L. , Asay , K. H. , Paulsen , G. M. and Wilson , R. F. Vol. I , 371 – 379 . Madison, WI : Crop Sci. Soc. Am.: .
  • Duncan , R. R. 1991 . Acid Soil Tolerance Breeding in Sorghum. . Adv. Agron. (India) , 1 : 71 – 79 .
  • Duncan , R. R. and Baligar , V. C. 1990 . “ Genetics, Breeding, and Physiological Mechanism of Nutrient Uptake and Use Efficiency. ” . In InCrops as Enhancers of Nutrient Use Edited by: Baligar , V. C. and Duncan , R. R. 3 – 35 . San Diego, CA : Academic Press: .
  • Foy , C. D. 1983 . Plant Adaptation to Mineral Stress in Problem Soils. . Iowa State J. Res. , 57 : 339 – 354 .
  • Lambais , M. R. and Cardoso , E.J.B. N. 1993 . Response of Stylosanthes guianensisto Endomycorrhizal Fungi Inoculation as Affected by Lime and Phosphorus Applications. II. . Nutrient Uptake. Plant Soil , 150 : 109 – 116 .
  • 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 .
  • Saggin , O. J. Jr. and Siqueira , J. O. 1995 . Evaluation of the Symbiotic Effectiveness of Endomycorrhizal Fungi for Coffee Tree. . R. Brasil Ci. Solo (Campinas) , 19 : 221 – 228 .
  • Saggin , O. J. Jr. , Siqueira , J. O. , Guimarâes , P.T. G. and Oliveira , E. 1995 . Inoculation of Coffee Tree with Different Mycorrhizal Fungi: Effects on Seedling Raising and on Outplants Growth in Fumigated Soil. . R. Brasil Ci. Solo (Campinas) , 19 : 213 – 220 .
  • Tinker , P. B. , Jones , M. D. and Durall , D. M. 1992 . “ Functional Comparison of Ecto- and Endomycorrhizas. ” . In InMycorrhizas in Ecosystems Edited by: Read , D. J. , Lewis , D. H. , Fitter , A. H. and Alexander , I. J. 303 – 310 . Wellingsford, UK : Comm. Agric. Bur. (CAB) Int.: .
  • Jakobsen , I. , Abbott , L. K. and Robson , A. D. 1992 . External Hyphae of Vesicular-Arbuscular Mycorrhizal Fungi Associated withTrifolium subterraneumL. 1. . Spread of Hyphae and Phosphorus Inflow into Roots. New Phytol. , 120 : 371 – 380 .
  • 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 .
  • Page , A. L. , Miller , R. H. and Keeney , D. R. 1982 . Methods of Soil Analysis. Part 2. Chemical and Microbiological Properties Edited by: Page , A. L. , Miller , R. H. and Keeney , D. R. Spec. Publ. No. 9 Madison, WI : Am. Soc. Agron. and Soil Sci. Soc. Am.: . 2nd Ed.;
  • Pella , E. and Colombo , B. 1973 . Study of Carbon, Hydrogen, and Nitrogen Determination by Combustion-Gas-Chromatography 697 – 719 . Berlin : Mikrochim. Acta [Wien], Springer-Verlag: .
  • Bartolome-Esteban , H. and Schenck , N. C. 1994 . Spore Germination and Hyphal Growth of Arbuscular Mycorrhizal Fungi in Relation to Soil Aluminum Saturation. . Mycologia , 86 : 217 – 226 .
  • Clark , R. B. , Zeto , S. K. , Ritchey , K. D. and Baligar , V. C. 1997 . Growth of Forages on Acid Soil Amended with Flue Gas Desulfurization By-Products. . Fuel , 76 : 771 – 775 .
  • Bolan , N. S. 1991 . A Critical Review on the Role of Mycorrhizal Fungi in the Uptake of Phosphorus by Plants. . Plant Soil , 134 : 187 – 207 .
  • Hetrick , B.A. D. 1989 . “ Acquisition of Phosphorus by VA Mycorrhizal Fungi and the Growth Responses of Their Host Plants. ” . In InNitrogen, Phosphorus and Sulphur Utilization by Fungi Edited by: Boddy , L. , Marchant , R. and Reid , D. J. 205 – 226 . New York : Cambridge Univ. Press: .
  • Marschner , H. and Dell , B. 1994 . Nutrient Uptake in Mycorrhizal Symbiosis. . Plant Soil , 159 : 89 – 102 .
  • Jakobsen , I. 1995 . “ Transport of Phosphorus and Carbon in VA Mycorrhizas. ” . In InMycorrhiza Edited by: Varma , A. and Hock , B. 297 – 324 . Berlin : Springer-Verlag: .
  • Koide , R. T. 1991 . Tansley Review No. 29: Nutrient Supply, Nutrient Demand and Plant Response to Mycorrhizal Infection. . New Phytol. , 117 : 365 – 386 .
  • Smith , F. A. and Smith , S. E. 1996 . Pathways, Mechanisms and Efficiency of Phosphate Transfer in Vesicular-arbuscular Mycorrhizal Roots. . Acta Phytogeogr. Suec. , 81 : 119 – 125 .
  • Jakobsen , I. , Abbott , L. K. and Robson , A. D. 1992 . External Hyphae of Vesicular-Arbuscular Mycorrhizal Fungi Associated withTrifolium subterraneumL. 2. Hyphal Transport of32P Over Defined Distances. . New Phytol. , 120 : 509 – 516 .
  • Pearson , J. N. , Abbott , L. K. and Jasper , D. A. 1994 . Phosphorus, Soluble Carbohydrates and the Competition Between Two Arbuscular Mycorrhizal Fungi Colonizing Subterranean Clover. . New Phytol. , 127 : 101 – 106 .
  • Joner , E. J. and Jakobsen , I. 1994 . Contribution by Two Arbuscular Mycorrhizal Fungi to P Uptake by Cucumber (Cucumis sativusL.) from32P-labelled Organic Matter During Mineralization in Soil. . Plant Soil , 163 : 203 – 209 .
  • 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 .
  • Bürkert , B. and Robson , A. 1994 . 65Zn Uptake in Subterranean Clover (Trifolium subterraneumL.) by Three Vesicular-Arbuscular Mycorrhizal Fungi in a Root-free Sandy Soil. . Soil Biol. Biochem. , 26 : 1117 – 1124 .
  • Pearson , J. N. and Jakobsen , I. 1993 . The Relative Contribution of Hyphae and Roots to Phosphorus Uptake by Arbuscular Mycorrhizal Plants, Measured by Dual Labelling with32P and33P. . New Phytol. , 124 : 489 – 494 .

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.