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Updated: Nov 8, 2025

Investigation of Plant Interactions Across Common Mycorrhizal Networks Using Rotated Cores
Published on: March 26, 2019
Plant nitrogen capture from organic matter as affected by spatial dispersion, interspecific competition and
1Department of Biology, Area 2, The University of York, PO Box 373, York, YO10 5YW, UK.
Abstract:
• The capture of nitrogen (N) by plants from N-rich complex organic material differing in spatial (uniform dispersion or discrete patches) heterogeneity was measured, as well as the subsequent impact on N capture of the addition of a mycorrhizal inoculum ( Glomus hoi ). • The organic material was dual-labelled with 15 N and 13 C to follow plant uptake of N (as 15 N) and to determine the amounts of original 13 C and 15 N which remained in the soil at harvest. The organic material was added to microcosm units containing Lolium perenne or Plantago lanceolata in intra or interspecific competition. • Plant N capture from the dispersed organic material was more than twice that from the discrete patch (dispersed: 17%; discrete: 8%). There was no effect of species composition or the mycorrhizal inoculum on total plant N capture except when in interspecific plant competition. Here, N capture was dependent on the root length produced and was always higher when the mycorrhizal inoculum was present. • Mycorrhizal colonization increased N capture from the organic material when in interspecific plant competition but not in monoculture.
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