Variation in the Activity of Some Enzymes of Photorespiratory Metabolism in C4 Grasses
Author:
Publisher
Oxford University Press (OUP)
Subject
Plant Science
Link
http://academic.oup.com/aob/article-pdf/96/5/863/435748/mci238.pdf
Reference37 articles.
1. Arnon DI. 1949 . Copper enzymes in isolated chloroplasts: polyphenoloxidase in Beta vulgaris. Plant Physiology24: 1–15.
2. Dai Z, Ku MSB, Edwards GE. 1993 . C4 photosynthesis: the CO2-concentrating mechanism and photorespiration. Plant Physiology103: 83–90.
3. Dai Z, Ku MSB, Edwards GE. 1995 . C4 photosynthesis: the effects of leaf development on the CO2-concentrating mechanism and photorespiration in maize. Plant Physiology107: 815–825.
4. Dengler NG, Nelson T. 1999 . Leaf structure and development in C4 plants. In: Sage RF, Monson RK, eds. C4 plant biology. San Diego: Academic Press, 133–172.
5. Devi MT, Raghavendra AS. 1993 . Partial reduction in activities of photorespiratory enzymes in C3-C4 intermediates of Alternanthera and Parthenium. Journal of Experimental Botany44: 779–784.
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