Immunochemical quantification of cytochrome f in leaves of a non-yellowing senescence mutant of Festuca pratensis
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/BF00032649.pdf
Reference31 articles.
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2. Bendall DS, Davenport HE and Hill R (1971) Cytochrome components of chloroplasts of the higher plant. Mechods Enzymol 23: 327?344
3. Ben-David H, Nelson N and Gepstein S (1983) Differential changes in the amount of protein complexes in the chloroplast membrane during senescence of oat and bean leaves. Plant Physiol 73: 507?510
4. Cramer WA, Widger WR, Herrmann RG and Trebst A (1985) Topography and function of thylakoid membrane proteins. Trends Biochem Sci 10: 125?129
5. Davies TGE, Ougham HJ, Thomas H and Rogers LJ (1989a) Leaf development in Lolium temulentum: plastid membrane polypeptides in relation to assembly of the photosynthetic apparatus and leaf growth. Physiol Plantarum 75: 47?54
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1. Differences in growth and nitrogen productivity between a stay-green genotype and a wild-type of Lolium perenne under limiting relative addition rates of nitrate supply;Physiologia Plantarum;2002-09
2. What stay‐green mutants tell us about nitrogen remobilization in leaf senescence;Journal of Experimental Botany;2002-04-15
3. Effects of a Stay-green Mutation on Plant Nitrogen Relations in Lolium perenne During N Starvation and after Defoliation;Annals of Botany;2002-01-01
4. Chlorophyll a fluorescence, enzyme and antioxidant analyses provide evidence for the operation of alternative electron sinks during leaf senescence in a stay-green mutant of Festuca pratensis;Plant, Cell and Environment;1997-11
5. Leaf senescence in a non-yellowing mutant of Festuca pratensis: implications of the stay-green mutation for photosynthesis, growth and nitrogen nutrition;Plant, Cell and Environment;1997-08
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