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Rising temperatures reduce global wheat production

  • S. Asseng
  • , F. Ewert
  • , P. Martre
  • , R. P. Rötter
  • , D. B. Lobell
  • , D. Cammarano
  • , B. A. Kimball
  • , M. J. Ottman
  • , G. W. Wall
  • , J. W. White
  • , M. P. Reynolds
  • , P. D. Alderman
  • , P. V.V. Prasad
  • , P. K. Aggarwal
  • , J. Anothai
  • , B. Basso
  • , C. Biernath
  • , A. J. Challinor
  • , G. De Sanctis
  • , J. Doltra
  • E. Fereres, M. Garcia-Vila, S. Gayler, G. Hoogenboom, L. A. Hunt, R. C. Izaurralde, M. Jabloun, C. D. Jones, K. C. Kersebaum, A. K. Koehler, C. Müller, S. Naresh Kumar, C. Nendel, G. O'leary, J. E. Olesen, T. Palosuo, E. Priesack, E. Eyshi Rezaei, A. C. Ruane, M. A. Semenov, I. Shcherbak, C. Stöckle, P. Stratonovitch, T. Streck, I. Supit, F. Tao, P. J. Thorburn, K. Waha, E. Wang, D. Wallach, J. Wolf, Z. Zhao, Y. Zhu
  • University of Florida
  • Rheinische Friedrich-Wilhelms-Universität Bonn
  • INRA, UMR 1095 Génétique, Diversité and Ecophysiologie des Céréales (GDEC)
  • LAIC, Université d'Auvergne
  • Natural Resources Institute Finland (Luke)
  • Stanford University
  • James Hutton Institute
  • ARS/USDA
  • School of Plant Sciences
  • CIMMYT Int. Adpo
  • Kansas State University
  • International Water Management Institute
  • Washington State University Prosser Irrigated Agriculture Research and Extension Center
  • PSU-ESSAND
  • Michigan State University
  • Helmholtz Zentrum München German Research Center for Environmental Health
  • University of Leeds
  • International Centre for Tropical Agriculture (CIAT)
  • INRA
  • European Commission Joint Research Centre
  • Cantabrian Agricultural Research and Training Centre (CIFA)
  • IAS-CSIC and University of Cordoba
  • WESS-Water and Earth System Science Competence Cluster, C/o University of Tübingen
  • University of Guelph
  • University of Maryland, College Park
  • Texas AandM AgriLife Research and Extension Center, Texas AandM University
  • Aarhus University
  • Leibniz Centre for Agricultural Landscape Research ZALF
  • Potsdam Institute for Climate Impact Research (PIK)–Member of the Leibniz Association
  • IARI PUSA
  • Landscape and Water Sciences
  • NASA Goddard Institute for Space Studies
  • Rothamsted Research
  • Washington State University Pullman
  • Hohenheim University
  • Wageningen University and Research Centre
  • Chinese Academy of Sciences
  • CSIRO Agriculture and Food
  • UMR 1248 Agrosystèmes et développement territorial (AGIR)
  • China Agricultural University
  • Nanjing Agricultural University

Research output: Contribution to journalArticlepeer-review

2117 Scopus citations

Abstract

Crop models are essential tools for assessing the threat of climate change to local and global food production. Present models used to predict wheat grain yield are highly uncertain when simulating how crops respond to temperature. Here we systematically tested 30 different wheat crop models of the Agricultural Model Intercomparison and Improvement Project against field experiments in which growing season mean temperatures ranged from 15°C to 32°C, including experiments with artificial heating. Many models simulated yields well, but were less accurate at higher temperatures. The model ensemble median was consistently more accurate in simulating the crop temperature response than any single model, regardless of the input information used. Extrapolating the model ensemble temperature response indicates that warming is already slowing yield gains at a majority of wheat-growing locations. Global wheat production is estimated to fall by 6% for each °C of further temperature increase and become more variable over space and time.

Original languageEnglish
Pages (from-to)143-147
Number of pages5
JournalNature Climate Change
Volume5
Issue number2
DOIs
StatePublished - 28 Jan 2015
Externally publishedYes

UN SDGs

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

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

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