Literature DB >> 22874755

Food security and climate change: on the potential to adapt global crop production by active selection to rising atmospheric carbon dioxide.

Lewis H Ziska1, James A Bunce, Hiroyuki Shimono, David R Gealy, Jeffrey T Baker, Paul C D Newton, Matthew P Reynolds, Krishna S V Jagadish, Chunwu Zhu, Mark Howden, Lloyd T Wilson.   

Abstract

Agricultural production is under increasing pressure by global anthropogenic changes, including rising population, diversion of cereals to biofuels, increased protein demands and climatic extremes. Because of the immediate and dynamic nature of these changes, adaptation measures are urgently needed to ensure both the stability and continued increase of the global food supply. Although potential adaption options often consider regional or sectoral variations of existing risk management (e.g. earlier planting dates, choice of crop), there may be a global-centric strategy for increasing productivity. In spite of the recognition that atmospheric carbon dioxide (CO(2)) is an essential plant resource that has increased globally by approximately 25 per cent since 1959, efforts to increase the biological conversion of atmospheric CO(2) to stimulate seed yield through crop selection is not generally recognized as an effective adaptation measure. In this review, we challenge that viewpoint through an assessment of existing studies on CO(2) and intraspecific variability to illustrate the potential biological basis for differential plant response among crop lines and demonstrate that while technical hurdles remain, active selection and breeding for CO(2) responsiveness among cereal varieties may provide one of the simplest and direct strategies for increasing global yields and maintaining food security with anthropogenic change.

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Year:  2012        PMID: 22874755      PMCID: PMC3441068          DOI: 10.1098/rspb.2012.1005

Source DB:  PubMed          Journal:  Proc Biol Sci        ISSN: 0962-8452            Impact factor:   5.349


  20 in total

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  16 in total

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2.  Can a collapse of global civilization be avoided?

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Review 3.  Evolutionary and ecological responses to anthropogenic climate change: update on anthropogenic climate change.

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Journal:  Plant Physiol       Date:  2012-10-05       Impact factor: 8.340

4.  Phenotypic Plasticity Conditions the Response of Soybean Seed Yield to Elevated Atmospheric CO2 Concentration.

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Review 5.  Improving photosynthesis.

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6.  Do the rich always become richer? Characterizing the leaf physiological response of the high-yielding rice cultivar Takanari to free-air CO2 enrichment.

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8.  An indica rice genotype showed a similar yield enhancement to that of hybrid rice under free air carbon dioxide enrichment.

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9.  Increasing minimum daily temperatures are associated with enhanced pesticide use in cultivated soybean along a latitudinal gradient in the mid-western United States.

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Review 10.  Harnessing Diversity in Wheat to Enhance Grain Yield, Climate Resilience, Disease and Insect Pest Resistance and Nutrition Through Conventional and Modern Breeding Approaches.

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