Bally J, Nadai M, Vitel M, Rolland A, Dumain R, Dubald M: Plant physiological adaptations to the massive foreign protein synthesis occurring in recombinant chloroplasts.
Plant Physiology 150: 1474-1481
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Torzillo G, Scoma A, Faraloni C, Ena A and Johanningmeier U: Increased hydrogen photoproduction by means of a sulfur-deprived Chlamydomonas reinhardtii D1 protein mutant.
International Journal of Hydrogen Energy 34: 4529-4536
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Borghi M, R. Tognetti R, Monteforti G and Sebastiani L: Responses of two poplar species (Populus alba and Populus x canadensis) to high copper concentrations.
Environmental and Experimental Botany 62: 290–299
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Duan W, Fan PG, Wang LJ, Li WD, Yan ST and LI SH: Photosynthetic response to low sink demand after fruit removal in relation to photoinhibition and photoprotection in peach trees.
Tree Physiology 28, 123–132
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Roleda MY, Dethleff D and Wiencke C: Transient sediment load on blades of Arctic Saccharina latissima can mitigate UV radiation effect on photosynthesis.
Polar Biology 31: 765–769
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Wang N, Yu F-H, Li P-X, He W-M, Liu F-H, Liu J-M and Dong M: Clonal integration affects growth, photosynthetic efficiency and biomass allocation, but not the competitive ability, of the alien invasive Alternanthera philoxeroides under severe stress.
Annals of Botany 101: 671–678
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Yamane K, Kawasaki M, Taniguchi M and Miyake H: Correlation between chloroplast ultrastructure and chlorophyll fluorescence characteristics in the leaves of rice (Oryza sativa L.) grown under salinity.
Plant Production Science 11: 139-145
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Matsubara S, Morosinotto T, Osmond CB and Bassi R: Short- and long-term operation of the lutein-epoxide xycle in light-harvesting antenna complexes.
Plant Physiology 144: 926-941
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Busch F, Hüner NPA and Ensminger I: Increased air temperature during simulated autumn conditions does not increase photosynthetic carbon gain but affects the dissipation of excess energy in seedlings of the evergreen conifer Jack Pine.
Plant Physiology 143: 1242–1251
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Yamazaki J-Y, Yoda E, Takahashi A, Sonoike K and Maruta E: Pacific Ocean and Japan Sea ecotypes of Japanese beech (Fagus crenata) differ in photosystem responses to continuous high light.
Tree Physiology 27, 961–968
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Schreiber U: Pulse-amplitude-modulation (PAM) fluorometry and saturation pulse method: an overview. In: Papageorgiou GC, Govindjee (eds.) Chlorophyll a Fluorescence: A Signature of Photosynthesis.
Springer, The Netherlands, pp. 279-319
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Kolb CA, Käser MA, Kopecký J, Zotz G, Riederer M and Pfündel EE: Effects of natural intensities of visible and ultraviolet radiation on epidermal ultraviolet screening and photosynthesis in grape leaves.
Plant Physiology 127: 863-875
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Nogués S, Baker NR: Effects of drought on photosynthesis in Mediterranean plants grown under enhanced UV-B radiation.
Journal of Experimental Botany 51: 1309-1317
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Fracheboud Y, Haldimann P, Leipner J and Stamp P: Chlorophyll fluorescence as a selection tool for cold tolerance of photosynthesis in maize (Zea mays L.).
Journal of Experimental Botany, Vol 50, 1533-1540
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Hymus GJ, Ellsworth DS, Baker NR, Long SP: Does free-air carbon dioxide enrichment affect photochemical energy use by evergreen trees in different seasons? A chlorophyll fluorescence study of mature loblolly pine.
Plant Physiology 120: 1183–1191
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Krause GH, Schmude C, Garden H, Koroleva OY and Winter K: Effects of solar ultraviolet radiation on the potential efficiency of photosystem II in leaves of tropical plants.
Plant Physiology 121: 1349-1358
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Ceulemans R, Jiang XN, Shao BY: Growth and physiology of one-year old poplar (Populus) under elevated atmospheric CO2 levels.
Annals of Botany 75: 609-617
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