Amazonian and Andean tree communities are not tracking current climate warming
Abstract
Climate change is shifting species distributions, leading to changes in community composition and novel species assemblages worldwide. However, the responses of tropical forests to climate change across large-scale environmental gradients remain largely unexplored. Using long-term data over 66,000 trees of more than 2,500 species occurring over 3,500 m elevation along the hyperdiverse Amazon-to-Andes elevational gradients in Peru and Bolivia, we assessed community-level shifts in species composition over a 40+ y time span. We tested the thermophilization hypothesis, which predicts an increase in the relative abundances of species from warmer climates through time. Additionally, we examined the relative contributions of tree mortality, recruitment, and growth to the observed compositional changes. Mean thermophilization rates (TR) across the Amazon-to-Andes gradient were slow relative to regional temperature change. TR were positive and more variable among Andean forest plots compared to Amazonian plots but were highest at midelevations around the cloud base. Across all elevations, TR were driven primarily by tree mortality and decreased growth of highland (cool-adapted) species rather than an influx of lowland species with higher thermal optima. Given the high variability of community-level responses to warming along the elevational gradients, the high tree mortality, and the slower-than-warming rates of compositional change, we conclude that most tropical tree species, and especially lowland Amazonian tree species, will not be able to escape current or future climate change through upward range shifts, causing fundamental changes to composition and function in Earth’s highest diversity forests.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (21)
William Farfan-Rios
Herbario Vargas, Universidad Nacional de San Antonio Abad del Cusco
Kenneth J. Feeley
Department of Biology, University of Miami
Jonathan A. Myers
Sebastian Tello
Missouri Botanical Garden
Jhonatan Sallo-Bravo
Andrew Sabin Center for Environment and Sustainability and Department of Biology, Wake Forest University
Yadvinder Malhi
Oliver L. Phillips
Timothy R. Baker
Alex Nina-Quispe
Department of Science, Chemistry Section, and Institute for Nature Earth and Energy, Pontifical Catholic University of Peru
Karina Garcia-Cabrera
Biology Department and Center for Energy, Environment and Sustainability, Wake Forest University
Sasan S. Saatchi
Jet Propulsion Laboratory, California Institute of Technology
John W. Terborgh
Department of Biology, University of Florida
Nigel C. A. Pitman
Collections, Conservation and Research, The Field Museum
Abel Lorenzo Monteagudo Mendoza
Jardín Botánico de Missouri
Rodolfo Vasquez
Jardín Botánico de Missouri
Norma Salinas
Leslie Cayola
Missouri Botanical Garden
Alfredo Fuentes Claros
Missouri Botanical Garden
Maria I. Loza
Herbario Nacional de Bolivia, Universidad Mayor de San Andrés
Percy Núñez Vargas
Herbario Vargas, Universidad Nacional de San Antonio Abad del Cusco
Miles R. Silman
Biology Department and Center for Energy, Environment and Sustainability, Wake Forest University