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Climate change and food security

Abstract

Dynamic interactions between and within the biogeophysical and human environments lead to the production, processing, distribution, preparation and consumption of food, resulting in food systems that underpin food security. Food systems encompass food availability (production, distribution and exchange), food access (affordability, allocation and preference) and food utilization (nutritional and societal values and safety), so that food security is, therefore, diminished when food systems are stressed. Such stresses may be induced by a range of factors in addition to climate change and/or other agents of environmental change (e.g. conflict, HIV/AIDS) and may be particularly severe when these factors act in combination. Urbanization and globalization are causing rapid changes to food systems. Climate change may affect food systems in several ways ranging from direct effects on crop production (e.g. changes in rainfall leading to drought or flooding, or warmer or cooler temperatures leading to changes in the length of growing season), to changes in markets, food prices and supply chain infrastructure. The relative importance of climate change for food security differs between regions. For example, in southern Africa, climate is among the most frequently cited drivers of food insecurity because it acts both as an underlying, ongoing issue and as a short-lived shock. The low ability to cope with shocks and to mitigate long-term stresses means that coping strategies that might be available in other regions are unavailable or inappropriate. In other regions, though, such as parts of the Indo-Gangetic Plain of India, other drivers, such as labour issues and the availability and quality of ground water for irrigation, rank higher than the direct effects of climate change as factors influencing food security. Because of the multiple socio-economic and bio-physical factors affecting food systems and hence food security, the capacity to adapt food systems to reduce their vulnerability to climate change is not uniform. Improved systems of food production, food distribution and economic access may all contribute to food systems adapted to cope with climate change, but in adopting such changes it will be important to ensure that they contribute to sustainability. Agriculture is a major contributor of the greenhouse gases methane (CH4) and nitrous oxide (N2O), so that regionally derived policies promoting adapted food systems need to mitigate further climate change.

Climate change impacts on agricultureAgriculture, Land Use, Rural DevelopmentAgriculture Sustainability and Environmental ImpactFood securityFood systemsClimate changeNatural resource economicsFood processingUrbanizationBusinessGeographyEcologyEconomics

MeSH terms

AgricultureClimateCommerceFood SupplyHumansModels, TheoreticalPopulation GrowthTemperatureUrbanizationWater Supply

Funding

  • Natural Environment Research Council
Citations
1,053
FWCI
17.46
field-weighted impact
References
53
Percentile
99%
vs. same field & year
Citations per year
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References
Agroecosystem responses to combinations of elevated CO2, ozone, and global climate change
Agriculture Ecosystems & Environment · 2003 · 603 citations
Socio-economic and climate change impacts on agriculture: an integrated assessment, 1990–2080
Philosophical Transactions of the Royal Society B Biological Sciences · 2005 · 1,049 citations
Crop responses to climatic variation
Philosophical Transactions of the Royal Society B Biological Sciences · 2005 · 1,006 citations
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