193
Views
7
CrossRef citations to date
0
Altmetric
Original Articles

EXPLOITATION OF PHOSPHORUS PATCHES WITH DIFFERENT PHOSPHORUS ENRICHMENT BY THREE ARBUSCULAR MYCORRHIZAL FUNGI

, , &
Pages 1096-1106 | Received 22 May 2009, Accepted 29 Apr 2010, Published online: 11 May 2011

REFERENCES

  • Antunes , P. M. , Schneider , K. , Hillis , D. and Klironomos , J. N. 2007 . Can the arbuscular mycorrhizal fungus Glomus intraradices actively mobilize P from rock phosphates? . Pedobiologia , 51 : 281 – 286 .
  • Bago , B. and Azcón-Aguilar , C. 1997 . Changes in the rhizospheric pH induced by arbuscular mycorrhiza formation in onion (Allium cepa L.) . Journal of Plant Nutrition and Soil Science , 160 : 333 – 339 .
  • Bago , B. , Vierheilig , P. , Piché , Y. and Azcón-Aguilar , C. 1996 . Nitrate depletion and pH changes induced by the extraradical mycelium of the arbuscular mycorrhizal fungus Glomus intraradices grown in monoxenic culture . New Phytologist , 133 : 273 – 280 .
  • Barroso , C. B. and Nahas , E. 2005 . The status of soil phosphate fractions and the ability of fungi to dissolve hardly soluble phosphates . Applied Soil Ecology , 29 : 73 – 83 .
  • Cavagnaro , T. R. , Smith , F. A. , Smith , S. E. and Jakobsen , I. 2005 . Functional diversity in arbuscular mycorrhizas: Exploitation of soil patches with different phosphate enrichment differs among fungal species . Plant, Cell & Environment , 28 : 642 – 650 .
  • Cui , M. and Caldwell , M. M. 1996a . Facilitation of plant phosphate acquisition by arbuscular mycorrhizas from enriched soil patches I. Roots and hyphae exploiting the same soil volume . New Phytologist , 133 : 453 – 460 .
  • Cui , M. and Caldwell , M. M. 1996b . Facilitation of plant phosphate acquistion by arbuscular mycorrhizas from enriched soil patches. II. Hyphae exploiting root-free soil . New Phytologist , 133 : 461 – 467 .
  • Drew , E. A. , Murray , R. S. , Smith , S. E. and Jakobsen , I. 2003 . Beyond the rhizosphere: Growth and function of arbuscular mycorrhizal external hyphae in sands of varying pore sizes . Plant and Soil , 255 : 105 – 114 .
  • Fan , Y. Q. , Luan , Y. S. , An , L. J. and Yu , K. 2008 . Arbuscular mycorrhizae formed by Penicillium pinophilum improve the growth, nutrient uptake and photosynthesis of strawberry with two inoculum types . Biotechnology Letters , 30 : 1489 – 1494 .
  • Gavito , M. E. and Olsson , P. A. 2003 . Allocation of plant carbon to foraging and storage in arbuscular mycorrhizal fungi . FEMS Microbiology Ecology , 45 : 181 – 187 .
  • Gavito , M. E. and Olsson , P. A. 2008 . Foraging strategies of the external mycelium of the arbuscular mycorrhizal fungi Glomus intraradices and Scutellospora calospora . Applied Soil Ecology , 39 : 282 – 290 .
  • Harley , J. L. and Smith , S. E. 1983 . Mycorrhizal Symbiosis , London : Academic Press .
  • Hodge , A. 2004 . The plastic plant: Root responses to heterogeneous supplies of nutrients . New Phytologist , 162 : 9 – 24 .
  • Hoagland , D. R. and Arnon , D. I. 1939 . The water culture method for growing plants without soil . California Agricultural Experiment Station Circular , 347 : 35
  • Hutchings , M. J. and de Kroon , H. 1994 . “ Foraging in plants: The role of morphological plasticity in resource acquisition ” . In Advances in Ecological Research 25 , Edited by: Begon , M. and Fitter , A. H. 159 – 238 . New York : Academic Press .
  • Jiao , N. Y. , Zhao , C. , Ning , T. Y. , Hou , L. T. , Fu , G. Z. , Li , Z. J. and Chen , M. C. 2008 . Effects of maize-peanut intercropping on economic yield and light response of photosysthesis . Chinese Journal of Applied Ecology , 19 : 981 – 985 .
  • Johansen , A. , Jakobsen , I. and Jensen , E. S. 1993 . External hyphae of vesicular-arbuscular mycorrhizal fungi associated with Trifolium subterraneum L. 3. Hyphal transport of 32P and 15N . New Phytologist , 124 : 61 – 68 .
  • Joner , E. J. and Jakobsen , I. 1995 . Growth and extracellular phosphatase activity of arbuscular mycorrhizal hyphae as influenced by soil organic matter . Soil Biology and Biochemistry , 27 : 1153 – 1159 .
  • Kormanik , P. P. and McGraw , A. C. 1982 . “ Quantification of vesiculararbuscular mycorrhizae in plant roots ” . In Methods and Principles of Mycorrhisat Research , Edited by: Schenk , S. C. 37 – 45 . St Paul, MN : American Phytopathological Society .
  • Kumar , S. , Stohlgern , T. J. and Chong , G. W. 2006 . Spatial heterogeneity influences native and nonnative species richness . Ecology , 87 : 3186 – 3199 .
  • Li , X. L. and Christie , P. 2001 . Changes in soil solution Zn and pH and uptake of Zn by arbuscular mycorrhizal red clover in Zn-contaminated soil . Chemosphere , 42 : 201 – 207 .
  • Li , X. L. , George , E. and Marschner , H. 1991a . Phosphorus depletion and pH decrease at the root-soil and hyphae-soil interfaces of VA-mycorrhizal white clover fertilized with ammonium . New Phytologist , 119 : 397 – 404 .
  • Li , X. L. , Marschner , H. and George , E. 1991b . Acquisition of phosphorus and copper by VA-mycorrhizal hyphae and root-to-shoot transport in white clover . Plant and Soil , 136 : 49 – 57 .
  • Lu , R. K. 2000 . The Analytical Methods for Soil and Agrochemistry , Beijing : China Agricultural Science and Technology Press .
  • Milne , B. T. 1991 . “ Heterogeneity as a multiscale characteristic of landscape ” . In Ecological Heterogeneity , Edited by: Kolasa , J. and Pickett , S. T. A. 69 – 84 . New York : Springer .
  • Nye , P. H. and Tinker , P. B. 1977 . Solute Movement in the Soil-Root System. , Berkeley, CA : University of California .
  • Olsson , P. A. , Jakobsen , I. and Wallander , H. 2002 . Foraging and resource allocation strategies of mycorrhizal fungi in a patchy environment . Mycorrhizal Ecology , 157 : 93 – 115 .
  • Palmer , T. M. 2003 . Spatial habitat heterogeneity influences competition and coexistence in an african acacia ant guild . Ecology , 84 : 2843 – 2855 .
  • 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 with 32P and 33P . New Phytologist , 124 : 489 – 494 .
  • Ravnskov , S. , Larsen , J. , Olsson , P. A. and Jakobsen , I. 1999 . Effects of various organic compounds on growth and phosphorous uptake of an arbuscular mycorrhizal fungus . New Phytologist , 141 : 517 – 524 .
  • Safir , G. R. 1987 . Ecophysiology of VA Mycorrhizal Plants. , Boca Raton, FL : CRC Press .
  • Sharpley , A. N. 1995 . Soil phosphorus dynamics: agronomic and environmental impacts . Ecological Engineering , 5 : 261 – 279 .
  • Shen , H. , Christie , P. and Li , X. L. 2006 . Uptake of zinc, cadmium and phosphorus by arbuscular mycorrhizal maize (Zea mays L.) from a low available phosphorus calcareous soil spiked with zinc and cadmium . Environmental Geochemistry and Health , 28 : 111 – 119 .
  • Sheng , M. , Tang , M. , Chen , H. , Yang , B. W. , Zhang , F. F. and Huang , Y. H. 2008 . Influence of arbuscular mycorrhizae on photosynthesis and water status of maize plants under salt stress . Mycorrhiza , 18 : 287 – 296 .
  • Smith , F. A. , Jakobsen , I. and Smith , S. E. 2000 . Spatial differences in acquisittion of soil phosphate between two arbuscular mycorrhizal fungi in symbiosis with Medicago truncatula . New Phytologist , 147 : 357 – 366 .
  • Smith , S. E. , Smith , F. A. and Jakobsen , I. 2003 . Mycorrhizal fungi can dominate phosphate supply to plants irrespective of growth responses . Plant Physiology , 129 : 611 – 618 .
  • St. John , T. V. , Coleman , D. C. and Reid , C. P. P. 1983 . Growth and spatial distribution of nutrient- absorbing organs: Selective exploitation of soil heterogeneity . Plant and Soil , 71 : 487 – 493 .
  • Stevenson , F. J. and Cole , M. A. 1999 . Cycles of Soil: Carbon, Nitrogen, Phosphorus, Sulfur, Micronutrients , 2nd ed. , New York : John Wiley & Sons .
  • Vance , C. P. , Uhde-Stone , C. and Allan , D. L. 2003 . Phosphorus acquisition and use: Critical adaptations by plants for securing a nonrenewable resource . New Phytologist , 157 : 423 – 447 .
  • Villegas , J. and Fortin , J. A. 2001 . Phosphorus solubilization and pH changes as a result of the interactions between soil bacteria and arbuscular mycorrhizal fungi on a medium containing NH4 + as nitrogen source . Canadian Journal of Botany , 79 : 865 – 870 .
  • Villegas , J. and Fortin , J. A. 2002 . Phosphorus solubilization and pH changes as a result of the interactions between soil bacteria and arbuscular mycorrhizal fungi on a medium containing NO3 − as nitrogen source . Canadian Journal of Botany , 80 : 571 – 576 .
  • Wagner , H. H. and Fortin , M. J. 2005 . Spatial analysis of landscapes: Concepts and statistics . Ecology , 86 : 1975 – 1987 .

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.