Literature DB >> 21141186

Niche complementarity due to plasticity in resource use: plant partitioning of chemical N forms.

Isabel W Ashton1, Amy E Miller, William D Bowman, Katharine N Suding.   

Abstract

Niche complementarity, in which coexisting species use different forms of a resource, has been widely invoked to explain some of the most debated patterns in ecology, including maintenance of diversity and relationships between diversity and ecosystem function. However, classical models assume resource specialization in the form of distinct niches, which does not obviously apply to the broadly overlapping resource use in plant communities. Here we utilize an experimental framework based on competition theory to test whether plants partition resources via classical niche differentiation or via plasticity in resource use. We explore two alternatives: niche preemption, in which individuals respond to a superior competitor by switching to an alternative, less-used resource, and dominant plasticity, in which superior competitors exhibit high resource use plasticity and shift resource use depending on the competitive environment. We determined competitive ability by measuring growth responses with and without neighbors over a growing season and then used 15N tracer techniques to measure uptake of different nitrogen (N) forms in a field setting. We show that four alpine plant species of differing competitive abilities have statistically indistinguishable uptake patterns (nitrate > ammonium > glycine) in their fundamental niche (without competitors) but differ in whether they shift these uptake patterns in their realized niche (with competitors). Competitively superior species increased their uptake of the most available N form, ammonium, when in competition with the rarer, competitively inferior species. In contrast, the competitively inferior species did not alter its N uptake pattern in competition. The existence of plasticity in resource use among the dominant species provides a mechanism that helps to explain the manner by which plant species with broadly overlapping resource use might coexist.

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Year:  2010        PMID: 21141186     DOI: 10.1890/09-1849.1

Source DB:  PubMed          Journal:  Ecology        ISSN: 0012-9658            Impact factor:   5.499


  39 in total

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6.  Rising temperature reduces divergence in resource use strategies in coexisting parasitoid species.

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7.  Trait-based community assembly of understory palms along a soil nutrient gradient in a lower montane tropical forest.

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Review 9.  Root-root interactions: extending our perspective to be more inclusive of the range of theories in ecology and agriculture using in-vivo analyses.

Authors:  Marc Faget; Kerstin A Nagel; Achim Walter; Juan M Herrera; Siegfried Jahnke; Ulrich Schurr; Vicky M Temperton
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10.  Genetic diversity affects ecological performance and stress response of marine diatom populations.

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Journal:  ISME J       Date:  2016-04-05       Impact factor: 10.302

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