Relationship between CO2 Assimilation, Photosynthetic Electron Transport, and Active O2 Metabolism in Leaves of Maize in the Field during Periods of Low Temperature1

Author:

Fryer Michael J.1,Andrews James R.1,Oxborough Kevin1,Blowers David A.1,Baker Neil R.1

Affiliation:

1. Department of Biological Sciences, University of Essex, Colchester CO4 3SQ, Essex, United Kingdom

Abstract

Abstract Measurements of the quantum efficiencies of photosynthetic electron transport through photosystem II (φPSII) and CO2 assimilation (φCO2) were made simultaneously on leaves of maize (Zea mays) crops in the United Kingdom during the early growing season, when chilling conditions were experienced. The activities of a range of enzymes involved with scavenging active O2 species and the levels of key antioxidants were also measured. When leaves were exposed to low temperatures during development, the ratio of φPSII/φCO2 was elevated, indicating the operation of an alternative sink to CO2 for photosynthetic reducing equivalents. The activities of ascorbate peroxidase, monodehydroascorbate reductase, dehydroascorbate reductase, glutathione reductase, and superoxide dismutase and the levels of ascorbate and α-tocopherol were also elevated during chilling periods. This supports the hypothesis that the relative flux of photosynthetic reducing equivalents to O2 via the Mehler reaction is higher when leaves develop under chilling conditions. Lipoxygenase activity and lipid peroxidation were also increased during low temperatures, suggesting that lipoxygenase-mediated peroxidation of membrane lipids contributes to the oxidative damage occurring in chill-stressed leaves.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

Reference41 articles.

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2. Radical production and scavenging in the chloroplasts.;Asada,1996

3. Chilling sensitivity of photosynthesis in maize.;Baker,1994

4. Assaying for superoxide dismutase activity: some large consequences of minor changes in conditions.;Beyer;Anal Biochem,1987

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