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The effects of phenotypic plasticity and local adaptation on forecasts of species range shifts under climate change

Ecology Letters · 2014 · Vol. 17(11) · pp. 1351–1364
Fernando ValladaresSilvia MatesanzFrançois GuilhaumonMiguel B. AraújoLuís BalaguerMarta Benito GarzónWilliam K. CornwellErnesto GianoliMark van KleunenDaniel E. NayaAdrienne B. NicotraHendrik PoorterMiguel Á. Zavala

Abstract

Species are the unit of analysis in many global change and conservation biology studies; however, species are not uniform entities but are composed of different, sometimes locally adapted, populations differing in plasticity. We examined how intraspecific variation in thermal niches and phenotypic plasticity will affect species distributions in a warming climate. We first developed a conceptual model linking plasticity and niche breadth, providing five alternative intraspecific scenarios that are consistent with existing literature. Secondly, we used ecological niche-modeling techniques to quantify the impact of each intraspecific scenario on the distribution of a virtual species across a geographically realistic setting. Finally, we performed an analogous modeling exercise using real data on the climatic niches of different tree provenances. We show that when population differentiation is accounted for and dispersal is restricted, forecasts of species range shifts under climate change are even more pessimistic than those using the conventional assumption of homogeneously high plasticity across a species' range. Suitable population-level data are not available for most species so identifying general patterns of population differentiation could fill this gap. However, the literature review revealed contrasting patterns among species, urging greater levels of integration among empirical, modeling and theoretical research on intraspecific phenotypic variation.

Species Distribution and Climate ChangeEcology and Vegetation Dynamics StudiesPlant and animal studiesIntraspecific competitionEcologyPhenotypic plasticityNicheEcological nicheBiological dispersalBiologyRange (aeronautics)Local adaptationClimate change

MeSH terms

AcclimatizationAnimalsComputer SimulationGenotypeModels, BiologicalPhenotypePlantsGenetic VariationEcosystemPinusClimate Change

Funding

  • Comunidad de Madrid
  • Ministerio de Economía y Competitividad
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Cited by
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References
Why Mountain Passes are Higher in the Tropics
The American Naturalist · 1967 · 2,031 citations
Plant phenotypic plasticity in a changing climate
Trends in Plant Science · 2010 · 2,108 citations
Conceptual issues in local adaptation
Ecology Letters · 2004 · 3,728 citations
Ecological limits to plant phenotypic plasticity
New Phytologist · 2007 · 1,052 citations
Re-evaluating the costs and limits of adaptive phenotypic plasticity
Proceedings of the Royal Society B Biological Sciences · 2009 · 685 citations
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