Feeding the world: impacts of elevated [CO2] on nutrient content of greenhouse grown fruit crops and options for future yield gains

Author:

Doddrell Nicholas H12,Lawson Tracy3,Raines Christine A3,Wagstaff Carol2,Simkin Andrew J14

Affiliation:

1. NIAB , New Road, East Malling, Kent, ME19 6BJ UK

2. University of Reading Department of Food and Nutritional Sciences, , Whiteknights, Reading, Berkshire RG6 6DZ, UK

3. University of Essex School of Life Sciences, , Colchester CO4 4SQ, UK

4. University of Kent School of Biosciences, , Canterbury, United Kingdom CT2 7NJ, UK

Abstract

Abstract Several long-term studies have provided strong support demonstrating that growing crops under elevated [CO2] can increase photosynthesis and result in an increase in yield, flavour and nutritional content (including but not limited to Vitamins C, E and pro-vitamin A). In the case of tomato, increases in yield by as much as 80% are observed when plants are cultivated at 1000 ppm [CO2], which is consistent with current commercial greenhouse production methods in the tomato fruit industry. These results provide a clear demonstration of the potential for elevating [CO2] for improving yield and quality in greenhouse crops. The major focus of this review is to bring together 50 years of observations evaluating the impact of elevated [CO2] on fruit yield and fruit nutritional quality. In the final section, we consider the need to engineer improvements to photosynthesis and nitrogen assimilation to allow plants to take greater advantage of elevated CO2 growth conditions.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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