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Late-spring frost risk between 1959 and 2017 decreased in North America but increased in Europe and Asia

  • Constantin M. Zohner
  • , Lidong Mo
  • , Susanne S. Renner
  • , Jens Christian Svenning
  • , Yann Vitasse
  • , Blas M. Benito
  • , Alejandro Ordonez
  • , Frederik Baumgarten
  • , Jean François Bastin
  • , Veronica Sebald
  • , Peter B. Reich
  • , Jingjing Liang
  • , Gert Jan Nabuurs
  • , Sergio De-Miguel
  • , Giorgio Alberti
  • , Clara Antón-Fernández
  • , Radomir Balazy
  • , Urs Beat Brändli
  • , Han Y.H. Chen
  • , Chelsea Chisholm
  • Emil Cienciala, Selvadurai Dayanandan, Tom M. Fayle, Lorenzo Frizzera, Damiano Gianelle, Andrzej M. Jagodzinski, Bogdan Jaroszewicz, Tommaso Jucker, Sebastian Kepfer-Rojas, Mohammed Latif Khan, Hyun Seok Kim, Henn Korjus, Vivian Kvist Johannsen, Diana Laarmann, Mait Langn, Tomasz Zawila-Niedzwiecki, Pascal A. Niklaus, Alain Paquette, Hans Pretzsch, Purabi Saikia, Peter Schall, Vladimír Seben, Miroslav Svoboda, Elena Tikhonova, Helder Viana, Chunyu Zhang, Xiuhai Zhao, Thomas W. Crowther
  • ETH Zürich
  • Ludwig-Maximilians-Universität München
  • Aarhus University
  • Snow and Landscape Research WSL
  • University of Bergen
  • Copernicus Institute of Sustainable Development
  • Ghent University
  • University of Minnesota Twin Cities
  • Hawkesbury Institute for the Environment
  • Purdue University
  • Wageningen University and Research Centre
  • University of Lleida
  • Forest Sciences Centre of Catalonia (CEMFOR-CTFC)
  • Università degli Studi di Udine
  • IMM-CNR
  • Division of Forestry and Forest Resources
  • Forest Research Institute
  • Lakehead University
  • Fujian Normal University
  • Institute of Forest Ecosystem Research
  • Academy of Sciences of the Czech Republic
  • Concordia University
  • Institute of Entomology, Biology Centre of the Academy of Sciences of the Czech Republic
  • Universiti Malaysia Sabah
  • Fondazione Edmund Mach
  • Institute of Dendrology of the Polish Academy of Sciences
  • Poznan University of Life Sciences
  • University of Warsaw
  • University of Bristol
  • University of Copenhagen
  • Dr. Harisingh Gour Vishwavidyalaya (A Central University)
  • Seoul National University
  • National Center for Agro Meteorology
  • Seoul National University
  • Estonian University of Life Sciences
  • University of Tartu
  • State Forests-Coordination Centre for Environmental Projects
  • University of Zurich
  • Université du Québec Á Montréal
  • Central University of Jharkhand
  • Georg-August-Universität Göttingen
  • National Forest Centre - Forest Research Institute Zvolen
  • Czech University of Life Sciences Prague
  • Center for Forest Ecology and Productivity of the Russian Academy of Sciences
  • Polytechnic Institute of Viseu
  • Universidade de Trás-os-Montes e Alto Douro
  • Beijing Forestry University

Research output: Contribution to journalArticlepeer-review

251 Scopus citations

Abstract

Late-spring frosts (LSFs) affect the performance of plants and animals across the world's temperate and boreal zones, but despite their ecological and economic impact on agriculture and forestry, the geographic distribution and evolutionary impact of these frost events are poorly understood. Here, we analyze LSFs between 1959 and 2017 and the resistance strategies of Northern Hemisphere woody species to infer trees' adaptations for minimizing frost damage to their leaves and to forecast forest vulnerability under the ongoing changes in frost frequencies. Trait values on leaf-out and leaf-freezing resistance come from up to 1,500 temperate and boreal woody species cultivated in common gardens. We find that areas in which LSFs are common, such as eastern North America, harbor tree species with cautious (late-leafing) leaf-out strategies. Areas in which LSFs used to be unlikely, such as broad-leaved forests and shrublands in Europe and Asia, instead harbor opportunistic tree species (quickly reacting to warming air temperatures). LSFs in the latter regions are currently increasing, and given species' innate resistance strategies, we estimate that ∼35% of the European and ∼26% of the Asian temperate forest area, but only ∼10% of the North American, will experience increasing late-frost damage in the future. Our findings reveal region-specific changes in the spring-frost risk that can inform decision-making in land management, forestry, agriculture, and insurance policy.

Original languageEnglish
JournalProceedings of the National Academy of Sciences of the United States of America
Volume117
Issue number22
DOIs
StatePublished - 2 Jun 2020

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 2 - Zero Hunger
    SDG 2 Zero Hunger
  2. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • Climate change
  • Freezing damage
  • Late frost
  • Phenology
  • Spring leaf-out

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