Journal Article10.1146/ANNUREV.ECOLSYS.34.011802.132342
Functional Matrix: A Conceptual Framework for Predicting Multiple Plant Effects on Ecosystem Processes
TL;DR: A new theoretical framework is presented, the functional matrix, which builds upon the functional group and single trait approaches to account for the ecosystem effects of multiple traits that vary independently from one another.
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Abstract: ▪ Abstract Plant species differ in how they influence many aspects of ecosystem structure and function, including soil characteristics, geomorphology, biogeochemistry, regional climate, and the activity and distribution of other organisms. Attempts to generalize plant species effects on ecosystems have focused on single traits or suites of traits that strongly covary (functional groups). However, plant effects on any ecosystem process are mediated by multiple traits, and many of these traits vary independently from one another. Thus, most species have unique combinations of traits that influence ecosystems, and there is no single trait or functional-group classification that can capture the effects of these multiple traits, or can predict the multiple functions performed by different plant species. We present a new theoretical framework, the functional matrix, which builds upon the functional group and single trait approaches to account for the ecosystem effects of multiple traits that vary independently ...
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Citations
Let the concept of trait be functional
Cyrille Violle,Marie-Laure Navas,Denis Vile,Elena Kazakou,Claire Fortunel,Irène Hummel,Eric Garnier +6 more
TL;DR: An unambiguous definition of plant trait is given, with a particular emphasis on functional trait, and it is argued that this can be achieved by developing "integration functions" which can be grouped into functional response (community level) and effect (ecosystem level) algorithms.
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Biodiversity and Litter Decomposition in Terrestrial Ecosystems
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Incorporating plant functional diversity effects in ecosystem service assessments
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TL;DR: In this article, the authors propose a systematic way for progressing in understanding how land cover change affects ecosystem properties through functional diversity modifications, and apply the proposed framework to a grassland system in the central French Alps in which functional diversity, by responding to land use change, alters the provision of ecosystem services important to local stakeholders.
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Plant community responses to experimental warming across the tundra biome
Marilyn D. Walker,C. Henrik Wahren,Robert D. Hollister,Greg H. R. Henry,Lorraine E. Ahlquist,Juha M. Alatalo,M. Syndonia Bret-Harte,Monika P. Calef,Terry V. Callaghan,Amy B Carroll,Howard E. Epstein,Ingibjörg S. Jónsdóttir,Julia A. Klein,Borgthor Magnusson,Ulf Molau,Steven F. Oberbauer,Steven P. Rewa,Clare H. Robinson,Gaius R. Shaver,Katharine N. Suding,Catharine C. Thompson,Anne Tolvanen,Ørjan Totland,P. Lee Turner,Craig E. Tweedie,P. J. Webber,Philip A. Wookey +26 more
TL;DR: Warming increased height and cover of deciduous shrubs and graminoids, decreased cover of mosses and lichens, and decreased species diversity and evenness, which predict that warming will cause a decline in biodiversity across a wide variety of tundra, at least in the short term.
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