Levine, NaomiZhang, KeLongo, MarcosBaccini, AlessandroPhillips, Oliver L.Lewis, Simon L.Alvarez-Dávila, EstebanSegalin de Andrade, Ana CristinaBrienen, Roel J. W.Erwin, Terry L.Feldpausch, Ted R.Monteagudo Mendoza, Abel LorenzoNuñez Vargas, PercyPrieto, AdrianaSilva-Espejo, Javier EduardoMalhi, YadvinderMoorcroft, Paul2016-11-102015Levine, Naomi M., Ke Zhang, Marcos Longo, Alessandro Baccini, Oliver L. Phillips, Simon L. Lewis, Esteban Alvarez-Dávila, et al. 2015. “Ecosystem Heterogeneity Determines the Ecological Resilience of the Amazon to Climate Change.” Proc Natl Acad Sci USA 113 (3) (December 28): 793–797. doi:10.1073/pnas.1511344112.0027-8424http://nrs.harvard.edu/urn-3:HUL.InstRepos:29386979Understanding how changes in climate will affect terrestrial ecosystems is particularly important in tropical forest regions, which store large amounts of carbon and exert important feedbacks onto regional and global climates. By combining multiple types of observations with a state-of-the-art terrestrial ecosystem model, we demonstrate that the sensitivity of tropical forests to changes in climate is dependent on the length of the dry season and soil type, but also, importantly, on the dynamics of individual-level competition within plant canopies. These interactions result in ecosystems that are more sensitive to changes in climate than has been predicted by traditional models but that transition from one ecosystem type to another in a continuous, non–tipping-point manner.en-USAmazon forestsBiomassEcological resilienceClimate changeEcosystem heterogeneityEcosystem heterogeneity determines the ecological resilience of the Amazon to climate changeJournal Article2016-11-1010.1073/pnas.1511344112