Characterization of a 31 kDa polypeptide that accumulates in the light-harvesting apparatus of maize leaves during chilling
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Plant Science,Biochemistry,General Medicine
Link
http://link.springer.com/content/pdf/10.1007/BF00047357.pdf
Reference24 articles.
1. Baker NR, East TM and Long SP (1983) Chilling damage to photosynthesis in young Zea mays. II. Photochemical function of thylakoids in vivo. J Exp Bot 34: 189?197
2. Bennett J (1981) Biosynthesis of the light-harvesting chlorophyll a/b protein polypeptide turnover in darkness. Eur J Biochem 118: 61?70
3. Camm EL and Green BR (1980) Fractionation of thylakoid membranes with the nonionic detergent octyl-D-glucopyranoside. Plant Physiol 66: 428?432
4. Covello PS (1987) Modification of the light-harvesting apparatus of photosystem II by light and temperature. Ph.D. Thesis, University of Essex, Colchester, U.K.
5. Darr SC, Somerville SC and Arntzen CJ (1986) Monoclonal antibodies to the light harvesting chlorophyll a/b protein complexes of photosystem II. J Cell Biol 103: 733?740
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1. Cyclic electron flow around PSI monitored by afterglow luminescence in leaves of maize inbred lines (Zea mays L.): correlation with chilling tolerance;Planta;2005-02-02
2. Effects of low temperature stress on chloroplast development in a range of Zea mays cultivars;South African Journal of Botany;2004-12
3. Bundle sheath proteins are more sensitive to oxidative damage than those of the mesophyll in maize leaves exposed to paraquat or low temperatures;Journal of Experimental Botany;2000-01
4. Genotypic variation within Zea mays for susceptibility to and rate of recovery from chill-induced photoinhibition of photosynthesis;Physiologia Plantarum;1999-08
5. A Post-translational Modification of the Photosystem II Subunit CP29 Protects Maize from Cold Stress;Journal of Biological Chemistry;1995-04
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