Energy transfer for low temperature fluorescence in PS II mutant thylakoids
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/BF00018302.pdf
Reference32 articles.
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2. Bassi R and Simpson DJ (1987a) Chlorophyll-protein complexes of barley Photosystem I. Eur J Biochem 163: 221?230
3. Bassi R, Høyer-Hanson G, Barbato R, Giacometti GM and Simpson DJ (1987b) Chlorophyll-proteins of the Photosystem II antenna system. J Biol Chem 202: 13333?13342
4. Bricker TM (1990) The structure and function of CPa-1 and CPa-2 in Photosystem II. Photosynth Res 24: 1?13
5. Camm EL and Green BL (1980) Fractionation of thylakoid membranes with the nonionic detergent octyl-?-d-glucopyranoside. Plant Physiol 66: 428?432
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1. Structural and Functional Characteristics of the Mutant Plastids from Extranuclear Variegated Forms of Sunflower;Russian Journal of Plant Physiology;2004-03
2. Global spectral–kinetic analysis of room temperature chlorophyll a fluorescence from light-harvesting antenna mutants of barley;Philosophical Transactions of the Royal Society of London. Series B: Biological Sciences;2000-10-29
3. A nuclear-encoded protein of prokaryotic origin is essential for the stability of photosystem II in Arabidopsis thaliana;The EMBO Journal;1998-09-15
4. Appearance of long-wavelength excitation form of chlorophyll a in PS I fluorescence during greening of barley leaves under continuous light;Journal of Photochemistry and Photobiology B: Biology;1997-09
5. A nuclear mutant of Arabidopsis with impaired stability on distinct transcripts of the plastid psbB, psbD/C, ndhH, and ndhC operons.;The Plant Cell;1996-07
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