Changes of fluorescence and xanthophyll pigments during dehydration in the resurrection plantSelaginella lepidophylla in low and medium light intensities
Author:
Publisher
Springer Science and Business Media LLC
Subject
Ecology, Evolution, Behavior and Systematics
Link
http://link.springer.com/content/pdf/10.1007/BF00566968.pdf
Reference31 articles.
1. Adams WW, Demmig-Adams B, Winter K (1990) Relative contribution of zeaxanthin-related and zeaxanthin-unrelated types of ‘high-energy-state’ quenching of chlorophyll fluorescence in spinach leaves exposed to various environmental conditions. Plant Physiol 92:302–309
2. Adams WW, Demmig-Adams B (1992) Operation of the xanthophyll cycle in higher plants in response to diurnal changes in inident sunlight. Planta 186:390–398
3. Bergtrom G, Schaller M, Eickmeier WG (1982) Ultrastructural and biochemical bases of resurrection in the drought-tolerant vascular plant,Selaginella lepidophylla. J Ultrastr Res 78:269–282
4. Bewley JD, Krochko JE (1982) Desiccation-tolerance. In: Lange OL, Nobel PS, Osmond CB, Ziegler H (eds) Physiological plant ecology II. (Encyclopedia in plant physiology, NS, vol 12B). Springer, Berlin Heidelberg New York, pp 325–378
5. Bilger W, Rinke S, Schreiber U, Lange OL (1989) Inhibition of energy-transfer to photosystem II in lichens by dehydration: different properties of reversibility with green and blue-green phycobionts. J Plant Physiol 134:261–268
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