46
O. Bjorkman and B. Demmig-Adams
photon yield of O2 evolution, photosynthetic capacity, and carotenoid composition
during the "midday depression" of net CO2 uptake in Arbutus unedo growing in
Portugal. Planta 177: 377-387
Demmig-Adams B, Winter K, Kriiger A, Czygan F-C (1989b) Ze.axanthin and the
induction and relaxation kinetics of the dissipation of excess excitation energy in leaves
in 2% O2, 0% CO2, Plant Physiol 90: 887-893
Demmig-Adams B, Winter K, Winkelmann K, Kruger A, Czygan F-C (1989c) Photosynthetic characteristics and the ratios of chlorophyll, ~-carotene, and the components
of the xanthophyll cycle upon a sudden increase in growth light regime in several plant
species. Bot Acta 102: 319-325
Demmig-Adams B, Adams WW III, Heber U, Neimanis S, Winter K, Kruger A, Czygan
F-C, Bilger W, Bjorkman 0 (1990) Inhibition of zeaxanthin formation and of rapid
changes in radiationless energy dissipation by dithiothreitol in spinach leaves and
chloroplasts. Plant Physiol 92: 293-301
Ehleringer JR (1982) The influence of water stress and temperature on leaf pubescence
development in Encelia farinosa. Am J Bot 69: 670-675
Ehleringer JR (1988) Changes in leaf characteristics of species along elevational gradients
in the Wasatch Front, Utah. Am J Bot 75: 680-689
Ehleringer JR, Bjorkman 0 (1978) Pubescence and leaf spectral characteristics in a desert
shrub, Encelia farinosa. Oecologia 36: 151-162
Ehleringer JR, Forseth I (1980) Solar tracking by plants. Science 210: 1093-1098
Ehleringer JR, Mooney HA, Gulmon SL, Runde! PW (1981) Parallel evolution of leaf
pubescence in Encelia in coastal deserts of North and South America. Oecologia 49:
38-41
Forseth I, Ehleringer JR (1980) Solar tracking response to drought in a desert annual.
Oecologia 44: 159-163
Gilmore AM, Yamamoto HY (1991) Zeaxanthin formation and energy-dependent fluorescence quenching in pea chloroplasts under artificially-mediated linear and cyclic
electron transport. Plant Physiol 96: 635-643
Gilmore AM, Yamamoto HY (1992) Dark induction of zeaxanthin-dependent nonphotochemical fluorescence quenching mediated by ATP. Proc Natl Acad Sci USA 89:
1899-1903
Hager A (1980) The reversible, light-induced conversions of xanthophylls in the chloroplast. In: Czygan F-C (ed) Pigments in plants. Fischer, Stuttgart, pp 57-79
Haupt W, Scheuerlein R (1990) Chloroplast movement. Plant Cell Environ 13: 595-614
Horton P, Ruban AV, Rees D, Pascal AA, Noctor G, Young AJ (1991) Control of
the light-harvesting function of chloroplast membranes by aggregation of the LHCII
chlorophyll-protein complex. FEBS Lett 292: 1-4
Inoue Y, Shibata K (1974) Comparative examination of terrestrial plants leaves in terms
of light-induced absorption changes due to chloroplast rearrangements. Plant Cell
Physiol15: 717-721
Koller D (1990) Light-driven leaf movements. Plant Cell Environ 13: 615-632
Koller D, Shak T (1990) Light-driven movements in the solar-tracking leaf of Lupinus
palaestinus Boiss. Photochem Photobiol 52: 187-196
Krause GH, Weis E (1991) Chlorophyll fluorescence and photosynthesis: the basics.
Annu Rev Plant Physiol Plant Mol BioI 42: 313-349
Krause GH, Vemotte C, Briantais J-M (1982) Photoinduced quenching of chlorophyll
fluorescence in intact chloroplasts and algae. Resolution into two components. Biochim
Biophys Acta 679: 116-124
Krinsky NI (1979) Carotenoid protection against oxidation. Pure Appl Chern 51: 649-660
Ludlow MM, Bjorkman 0 (1984) Paraheliotropic leaf movement in Siratro as a protective mechanism against drought-induced damage to primary photosynthetic reactions:
damage by excessive light and heat. Planta 161: 505-518
Mooney HA, Ehleringer JR, Bjorkman 0 (1977) The energy balance of leaves of the
evergreen desert shrub Atriplex hymenelytra. Oecologia 29: 301-310
Neubauer C, Schreiber U (1989) Photochemical and non-photochemical quenching of
chlorophyll fluorescence induced by hydrogen peroxide. Z Naturforsch 44c: 262-270
Précédent

- 67/580

Suivant