Lichtenthaler H K. Chlorophylls and caratevoids pigments of photosynthetic membrances. Methods Enzymology, 1987, 148: 350-382.
[2]
Laemmli U K. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature, 1970, 227: 680-689.
[3]
Tripathy B C, Mohanty P. Zinc-inhibited electron transport of photosynthesis in isolated barley chloroplasts. Plant Physiology, 1980, 66: 1174-1178.
[4]
Willekens H, Vancamp W, Lnze D. Ozone, sulfurdioxide and ozone ultraviolet-B have similar effect on Mrna accumulation of antioxidant genes in Nicotiana plumbaginifolis L. Plant Physiology, 1994, 106: 1007-1014.
[5]
Krause G H, Weis E. Chlorophyll fluorescence and photosynthesis: The basics. Plant Molecular Biology, 1991, 42: 313-349.
[6]
Strasser R J, Tsimilli-Michael M, Srivastava A. Analysis of the fluorescence transient. In: Papageorgiou G C, Govindjee G C. Chlorophyll Fluorescence: A Signature of Photosynthesis. Dordrecht: Kluwer Academic Publishers, 2004: 321-362.
[7]
Somersalo S, Krause G H. Photoinhibition at chilling temperatures and effects of freezing stress on cold acclimated spinach leaves in the field. Physiologia Plantarum, 1990, 29: 617-622.
[8]
Pamela K, Diggle G. Extreme preformation in alpine Polygonum viviparum: An architectural and developmental analysis. American Journal of Botany, 1997, 84: 154-169.
Lütz C, Engel L. Changes in chloroplast ultrastructure in some high-alpine plants: Adaptation to metabolic demands and climate. Protoplasma, 2007, 231: 183-192.
Tjus S E, Mller B L, Scheller H V. Photosystem I is an early target of photoinhibition in barley illuminated at chilling temperatures. Plant Physiology, 1998, 116: 755-764.
Wang Y P, He W L, Huang H Y, et al. Antioxidative responses to different altitude in leaves of alpine plant Polygonum viviparum in summer. Acta Physiologiae Plantarum, 2009, 31: 839-848.