Ectomycorrhizal impacts on plant nitrogen nutrition: emerging isotopic patterns, latitudinal variation and hidden mechanisms

dc.contributor.authorMayor, Jordan
dc.contributor.authorBahram, Mohammad
dc.contributor.authorHenkel, Terry
dc.contributor.authorBuegger, Franz
dc.contributor.authorPritsch, Karin
dc.contributor.authorTedersoo, Leho
dc.date.accessioned2015-02-25T18:30:09Z
dc.date.available2015-02-25T18:30:09Z
dc.date.issued2015
dc.description.abstractEctomycorrhizal (EcM)-mediated nitrogen (N) acquisition is one main strategy used by terrestrial plants to facilitate growth. Measurements of natural abundance nitrogen isotope ratios (denoted as d15N relative to a standard) increasingly serve as integrative proxies for mycorrhiza-mediated N acquisition due to biological fractionation processes that alter 15N:14N ratios. Current understanding of these processes is based on studies from high-latitude ecosystems where plant productivity is largely limited by N availability. Much less is known about the cause and utility of ecosystem d15N patterns in the tropics. Using structural equation models, model selection and isotope mass balance we assessed relationships among co-occurring soil, mycorrhizal plants and fungal N pools measured from 40 high- and 9 low-latitude ecosystems. At low latitudes 15N-enrichment caused ecosystem components to significantly deviate from those in higher latitudes. Collectively, d15N patterns suggested reduced N-dependency and unique sources of EcM 15N-enrichment under conditions of high N availability typical of the tropics. Understanding the role of mycorrhizae in global N cycles will require reevaluation of high-latitude perspectives on fractionation sources that structure ecosystem d15N patterns, as well as better integration of EcM function with biogeochemical theories pertaining to climate-nutrient cycling relationships.
dc.format.extent96–107
dc.identifier1461-023X
dc.identifier.citationMayor, Jordan, Bahram, Mohammad, Henkel, Terry, Buegger, Franz, Pritsch, Karin, and Tedersoo, Leho. 2015. "Ectomycorrhizal impacts on plant nitrogen nutrition: emerging isotopic patterns, latitudinal variation and hidden mechanisms." <em>Ecology Letters</em>, 18, (1) 96–107. <a href="https://doi.org/10.1111/ele.12377">https://doi.org/10.1111/ele.12377</a>.
dc.identifier.issn1461-023X
dc.identifier.urihttp://hdl.handle.net/10088/24388
dc.publisherWiley-Blackwell
dc.relation.ispartofEcology Letters 18 (1)
dc.titleEctomycorrhizal impacts on plant nitrogen nutrition: emerging isotopic patterns, latitudinal variation and hidden mechanisms
dc.typearticle
sro.description.unitSTRI
sro.description.unitFellow
sro.identifier.doi10.1111/ele.12377
sro.identifier.itemID131018
sro.identifier.refworksID58706
sro.publicationPlaceHoboken

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