A meta-analysis of crop yield under climate change and adaptation (original) (raw)
References
Beddington, J. et al. What next for agriculture after durban?. Science335, 289–290 (2012). ArticleCAS Google Scholar
Ericksen, P. J., Ingram, J. S. I. & Liverman, D. M. Food security and global environmental change: Emerging challenges. Environ. Sci. Policy12, 373–377 (2009). Article Google Scholar
Easterling, W. et al. in Climate Change 2007: Impacts, Adaptation and Vulnerability (eds Parry, M. L., Canziani, O. F., Palutikof, J. P., van der Linden, P. J. & Hanson, C. E.) Food, fibre and forest products. 273–313 (Cambridge Univ. Press, 2007). Google Scholar
Pretty, J. et al. The top 100 questions of importance to the future of global agriculture. Int. J. Agr. Sustain.8, 219–236 (2010). Article Google Scholar
Godfray, H. C. et al. Food security: The challenge of feeding 9 billion people. Science327, 812–818 (2010). ArticleCAS Google Scholar
Hertel, T. W. The global supply and demand for agricultural land in 2050: A perfect storm in the making?. Amer. J. Agr. Econom.93, 259–275 (2011). Article Google Scholar
Tubiello, F. N., Soussana, J-F., Howden, S. M. & Easterling, W. Crop and pasture response to climate change. Proc. Natl Acad. Sci. USA104, 19686–19690 (2007). ArticleCAS Google Scholar
Lobell, D. B., Schlenker, W. & Costa-Roberts, J. Climate trends and global crop production since 1980. Science333, 616–620 (2011). ArticleCAS Google Scholar
Challinor, A. J., Ewert, F., Arnold, S., Simelton, E. & Fraser, E. Crops and climate change: Progress, trends, and challenges in simulating impacts and informing adaptation. J. Exp. Botany60, 2775–2789 (2009). ArticleCAS Google Scholar
Rickards, L. & Howden, S. M. Transformational adaptation: Agriculture and climate change. Crop Pasture Sci.63, 240–250 (2012). Article Google Scholar
White, J. W., Hoogenboom, G., Kimball, B. & Wall, G. Methodologies for simulating impacts of climate change on crop production. Field Crops Res.124, 357–368 (2011). Article Google Scholar
Howden, S. M. et al. Adapting agriculture to climate change. Proc. Natl Acad. Sci. USA104, 19691–19696 (2007). ArticleCAS Google Scholar
Knox, J., Hess, T., Daccache, A. & Wheeler, T. Climate change impacts on crop productivity in Africa and South Asia. Environ. Res. Lett.7, 034032 (2012). Article Google Scholar
Müller, C., Cramer, W., Hare, W. L. & Lotze-Campen, H. Climate change risks for African agriculture. Proc. Natl Acad. Sci. USA108, 4313–4315 (2011). Article Google Scholar
Thornton, P. K., Jones, P. G., Alagarswamy, G., Andresen, J. & Herrero, M. Adapting to climate change: Agricultural system and household impacts in East Africa. Agr. Systems103, 73–82 (2010). Article Google Scholar
Lobell, D. B. & Field, C. B. Global scale climate-crop yield relationships and the impacts of recent warming. Environ. Res. Lett.2, 004000 (2007). Article Google Scholar
Howden, S. M. & Crimp, S. in Advances and applications for management and decision making (eds Zerger, A. & Argent, R. M.) 170–176 (Modelling and Simulation Society of Australia and New Zealand, 2005). Google Scholar
Adger, N. et al. Are there social limits to adaptation to climate change?. Climatic Change93, 335–354 (2009). Article Google Scholar
Piao, S. et al. The impacts of climate change on water resources and agriculture in China. Nature467, 43–51 (2010). ArticleCAS Google Scholar
Soussana, J. F., Graux, A. I. & Tubiello, F. N. Improving the use of modelling for projections of climate change impacts on crops and pastures. J. Ext. Bot.61, 2217–2228 (2010). ArticleCAS Google Scholar
Challinor, A. J., Simelton, E. S., Fraser, E. D. G., Hemming, D. & Collins, M. Increased crop failure due to climate change: Assessing adaptation options using models and socio-economic data for wheat in China. Environ. Res. Lett.5, 034012 (2010). Article Google Scholar
Gregory, P. J., Johnson, S. N., Newton, A. C. & Ingram, J. S. I. Integrating pests and pathogens into the climate change/food security debate. J. Exp. Botany60, 2827–2838 (2009). ArticleCAS Google Scholar
Garrett, K. A. et al. The effects of climate variability and the color of weather time series on agricultural diseases and pests, and on decisions for their management. Agr. Forest Meteorol.170, 216–227 (2013). Article Google Scholar
Angulo, C et al. Implication of crop model calibration strategies for assessing regional impacts of climate change in Europe. Agr. Forest Meteorol.170, 32–46 (2013). Article Google Scholar
Challinor, A. J. et al. Methods and resources for climate impacts research: Achieving synergy. Bull. Amer. Meteorol. Soc.90, 825–835 (2009). Article Google Scholar
Hawkins, E., Osborne, T. M., Kit Ho, C. & Challinor, A. J. Calibration and bias correction of climate projections for crop modelling: An idealised case study over Europe. Agr. Forest Meteorol.170, 32–46 (2013). Article Google Scholar
Rosenzweig, C. et al. The Agricultural Model Intercomparison and Improvement Project (AgMIP): Protocols and pilot studies. Agr. Forest Meteorol.170, 166182 (2013). Article Google Scholar
Hansen, J., Satoa, M. & Ruedy, R. Perception of climate change. Proc. Natl Acad. Sci. USA109, 14720–14721 (2012). Article Google Scholar
Hawkins, E. et al. Increasing influence of heat stress on French maize yields from the 1960s to the 2030s. Glob. Change Biol.19, 937–947 (2013). Article Google Scholar
Berg, A., de Noblet-Ducoudré, N., Sultan, B., Lengaigne, M. & Guimberteau, M. Projections of climate change impacts on potential C4 crop productivity over tropical regions. Agr. Forest Meteorol.170, 89–102 (2012). Article Google Scholar
Tao, F., Zhang, Z., Liu, J. & Yokozawa, M. Modelling the impacts of weather and climate variability on crop productivity over a large area: A new super-ensemble-based probabilistic projection. Agr. Forest Meteorol.149, 1266–1278 (2009). Article Google Scholar
Tao, F. & Zhao, Z. Climate change, high-temperature stress, rice productivity, and water use in eastern china: A new superensemble-based probabilistic projection. J. Appl. Meteor. Climatol.52, 531–551 (2013). Article Google Scholar
Tao, F. & Zhang, Z. Climate change, wheat productivity and water use in the North China Plain: A new super-ensemble-based probabilistic projection. Agric. Forest Meteorol.170, 146–165 (2013). Article Google Scholar
Urban, D., Roberts, M. J., Schlenker, W. & Lobell, D. B. Projected temperature changes indicate significant increase in interannual variability of U.S. maize yields. Climatic Change112, 525–533 (2012). Article Google Scholar