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Scaling environmental change through the community‐level: a trait‐based response‐and‐effect framework for plants

Global Change Biology · 2008 · Vol. 14(5) · pp. 1125–1140
Katharine N. SudingSandra LavorelF. Stuart ChapinJohannes H. C. CornelissenSandra Dı́azÉric GarnierDeborah E. GoldbergDavid U. HooperStephen T. JacksonMarie‐Laure Navas

Abstract

Abstract Predicting ecosystem responses to global change is a major challenge in ecology. A critical step in that challenge is to understand how changing environmental conditions influence processes across levels of ecological organization. While direct scaling from individual to ecosystem dynamics can lead to robust and mechanistic predictions, new approaches are needed to appropriately translate questions through the community level. Species invasion, loss, and turnover all necessitate this scaling through community processes, but predicting how such changes may influence ecosystem function is notoriously difficult. We suggest that community‐level dynamics can be incorporated into scaling predictions using a trait‐based response–effect framework that differentiates the community response to environmental change (predicted by response traits) and the effect of that change on ecosystem processes (predicted by effect traits). We develop a response‐and‐effect functional framework, concentrating on how the relationships among species' response, effect, and abundance can lead to general predictions concerning the magnitude and direction of the influence of environmental change on function. We then detail several key research directions needed to better scale the effects of environmental change through the community level. These include (1) effect and response trait characterization, (2) linkages between response‐and‐effect traits, (3) the importance of species interactions on trait expression, and (4) incorporation of feedbacks across multiple temporal scales. Increasing rates of extinction and invasion that are modifying communities worldwide make such a research agenda imperative.

Ecology and Vegetation Dynamics StudiesPlant and animal studiesSpecies Distribution and Climate ChangeEnvironmental changeTraitEcosystemEcologyScalingGlobal changeCommunityScale (ratio)Function (biology)Functional response

Funding

  • U.S. Department of Energy
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Trends in Ecology & Evolution · 2003 · 2,858 citations
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Proceedings of the Royal Society B Biological Sciences · 2000 · 1,736 citations
Plant trait responses to grazing – a global synthesis
Global Change Biology · 2006 · 1,152 citations
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