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Crop responses to climatic variation

John R. PorterMikhail A. Semenov

Abstract

The yield and quality of food crops is central to the well being of humans and is directly affected by climate and weather. Initial studies of climate change on crops focussed on effects of increased carbon dioxide (CO2) level and/or global mean temperature and/or rainfall and nutrition on crop production. However, crops can respond nonlinearly to changes in their growing conditions, exhibit threshold responses and are subject to combinations of stress factors that affect their growth, development and yield. Thus, climate variability and changes in the frequency of extreme events are important for yield, its stability and quality. In this context, threshold temperatures for crop processes are found not to differ greatly for different crops and are important to define for the major food crops, to assist climate modellers predict the occurrence of crop critical temperatures and their temporal resolution. This paper demonstrates the impacts of climate variability for crop production in a number of crops. Increasing temperature and precipitation variability increases the risks to yield, as shown via computer simulation and experimental studies. The issue of food quality has not been given sufficient importance when assessing the impact of climate change for food and this is addressed. Using simulation models of wheat, the concentration of grain protein is shown to respond to changes in the mean and variability of temperature and precipitation events. The paper concludes with discussion of adaptation possibilities for crops in response to drought and argues that characters that enable better exploration of the soil and slower leaf canopy expansion could lead to crop higher transpiration efficiency.

Plant responses to elevated CO2Plant Water Relations and Carbon DynamicsClimate change impacts on agricultureClimate changeEnvironmental scienceContext (archaeology)PrecipitationCropCrop yieldYield (engineering)AgronomyCanopyPhenology

MeSH terms

AcclimatizationAdaptation, PhysiologicalClimateComputer SimulationHumansModels, BiologicalModels, TheoreticalPhotosynthesisRainTemperatureWeatherTriticumPlant TranspirationBiomassCrops, Agricultural
Citations
1,006
FWCI
16.14
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References
78
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99%
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References
Climate Change 2001: The Scientific Basis
Foreign Affairs · 2002 · 12,979 citations
Observed Variability and Trends in Extreme Climate Events: A Brief Review<sup>*</sup>
Bulletin of the American Meteorological Society · 2000 · 1,341 citations
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