Effects of propyl gallate on photosystem II efficiency in Dunaliella bardawil under high illumination as investigated by chlorophyll fluorescence measurements
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[1] M. Shariati,et al. Effects of n-propyl gallate on photosynthesis and physiological parameters in Dunaliella salina are affected by stressful conditions , 2012 .
[2] Govindjee,et al. Effects of salt stress on photosystem II efficiency and CO2 assimilation of two Syrian barley landraces , 2011 .
[3] M. J. Quiles,et al. Chlororespiration and tolerance to drought, heat and high illumination. , 2010, Journal of plant physiology.
[4] M. J. Quiles,et al. Effects of antimycin A and n-propyl gallate on photosynthesis in sun and shade plants , 2009 .
[5] M. J. Quiles,et al. Chlororespiration is involved in the adaptation of Brassica plants to heat and high light intensity. , 2007, Plant, cell & environment.
[6] R. Strasser,et al. Photosynthetic behavior of woody species under high ozone exposure probed with the JIP-test: a review. , 2007, Environmental pollution.
[7] Á. Jos,et al. Ecotoxicological effects of the antioxidant additive propyl gallate in five aquatic systems. , 2007, Water research.
[8] Matt Geisler,et al. IMMUTANS Does Not Act as a Stress-Induced Safety Valve in the Protection of the Photosynthetic Apparatus of Arabidopsis during Steady-State Photosynthesis1 , 2006, Plant Physiology.
[9] M. J. Quiles. Stimulation of chlororespiration by heat and high light intensity in oat plants. , 2006, Plant, cell & environment.
[10] H. Hultin,et al. Model system for testing the efficacy of antioxidants in muscle foods. , 2005, Journal of agricultural and food chemistry.
[11] K. Tomizawa,et al. CO2 response of cyclic electron flow around PSI (CEF-PSI) in tobacco leaves--relative electron fluxes through PSI and PSII determine the magnitude of non-photochemical quenching (NPQ) of Chl fluorescence. , 2005, Plant & cell physiology.
[12] G. Forti,et al. State Transitions in Chlamydomonas reinhardtii. The Role of the Mehler Reaction in State 2-to-State 1 Transition1 , 2005, Plant Physiology.
[13] S. Kikuchi,et al. Radial expansion of root cells and elongation of root hairs of Arabidopsis thaliana induced by massive doses of gamma irradiation. , 2004, Plant & cell physiology.
[14] K. Tomizawa,et al. Enhancement of cyclic electron flow around PSI at high light and its contribution to the induction of non-photochemical quenching of chl fluorescence in intact leaves of tobacco plants. , 2004, Plant & cell physiology.
[15] J. Xia,et al. Effects of salinity stress on PSII in Ulva lactuca as probed by chlorophyll fluorescence measurements , 2004 .
[16] M. Kuntz. Plastid terminal oxidase and its biological significance , 2004, Planta.
[17] D. Inzé,et al. Double antisense plants lacking ascorbate peroxidase and catalase are less sensitive to oxidative stress than single antisense plants lacking ascorbate peroxidase or catalase. , 2002, The Plant journal : for cell and molecular biology.
[18] W. Fricke,et al. The Biophysics of Leaf Growth in Salt-Stressed Barley. A Study at the Cell Level1 , 2002, Plant Physiology.
[19] A. Vonshak,et al. Effects of salinity stress on photosystem II function in cyanobacterial Spirulina platensis cells. , 2002, Physiologia plantarum.
[20] R. Strasser,et al. Multiple effects of chromate on the photosynthetic apparatus of Spirodela polyrhiza as probed by OJIP chlorophyll a fluorescence measurements. , 2001, Environmental pollution.
[21] J F Allen,et al. Molecular recognition in thylakoid structure and function. , 2001, Trends in plant science.
[22] Andreas C. Ströder,et al. Parameter optimisation of fast chlorophyll fluorescence induction model , 2001 .
[23] R. Strasser,et al. Estimation of the energetic connectivity of PS II centres in plants using the fluorescence rise O—J—I—P fitting of experimental data to three different PS II models , 2001 .
[24] K. Niyogi. Safety valves for photosynthesis. , 2000, Current opinion in plant biology.
[25] C. A. Martinez,et al. Gas exchange and chlorophyll fluorescence in four citrus rootstocks under aluminium stress. , 2000 .
[26] R. Strasser,et al. Synergistic and antagonistic effects of arbuscular mycorrhizal fungi and Azospirillum and Rhizobium nitrogen-fixers on the photosynthetic activity of alfalfa, probed by the polyphasic chlorophyll a fluorescence transient O-J-I-P. , 2000 .
[27] M. Kuntz,et al. Electron Flow between Photosystem II and Oxygen in Chloroplasts of Photosystem I-deficient Algae Is Mediated by a Quinol Oxidase Involved in Chlororespiration* , 2000, The Journal of Biological Chemistry.
[28] N. Huner,et al. Acclimation to low temperature or high light mitigates sensitivity to photoinhibition: roles of the Calvin cycle and the Mehler reaction , 2000 .
[29] K. Asada,et al. THE WATER-WATER CYCLE IN CHLOROPLASTS: Scavenging of Active Oxygens and Dissipation of Excess Photons. , 1999, Annual review of plant physiology and plant molecular biology.
[30] J. Argyroudi-Akoyunoglou,et al. Thylakoid protein phosphorylation is suppressed by 'free radical scavengers'. Correlation between PS II core protein degradation and thylakoid protein phosphorylation , 1998, Photosynthesis Research.
[31] M. Edelman,et al. Evidence for light‐dependent and light‐independent protein dephosphorylation in chloroplasts , 1997, FEBS letters.
[32] R. Strasser,et al. Measuring fast fluorescence transients to address environmental questions: the JIP-test , 1995 .
[33] K. Sonoike. Selective photoinhibition of photosystem I in isolated thylakoid membranes from cucumber and spinach , 1995 .
[34] Ernst-Detlef Schulze,et al. Ecophysiology of Photosynthesis , 1995, Springer Study Edition.
[35] A. Srivastava,et al. POLYPHASIC CHLOROPHYLL a FLUORESCENCE TRANSIENT IN PLANTS AND CYANOBACTERIA * , 1995 .
[36] M. Shariati,et al. Loss of intracellular glycerol from Dunaliella by electroporation at constant osmotic pressure: subsequent restoration of glycerol content and associated volume changes , 1994 .
[37] E. Aro,et al. Photoinhibition of Photosystem II. Inactivation, protein damage and turnover. , 1993, Biochimica et biophysica acta.
[38] J. Barber,et al. Inhibition of Water Splitting Increases the Susceptibility of Photosystem II to Photoinhibition. , 1992, Plant physiology.
[39] J. Barber,et al. Too much of a good thing: light can be bad for photosynthesis. , 1992, Trends in biochemical sciences.
[40] C. Jegerschöld,et al. Light-dependent degradation of the D1 protein in photosystem II is accelerated after inhibition of the water splitting reaction. , 1990, Biochemistry.
[41] A. Ben‐Amotz,et al. On the Factors Which Determine Massive beta-Carotene Accumulation in the Halotolerant Alga Dunaliella bardawil. , 1983, Plant physiology.
[42] E. Tyystjärvi. Photoinhibition of Photosystem II. , 2013, International review of cell and molecular biology.
[43] F. Sato,et al. Cyclic electron transport around photosystem I and its relationship to non-photochemical quenching in the unicellular green alga Dunaliella salina under nitrogen deficiency , 2012, Journal of Plant Research.
[44] Ivna Štolfa,et al. Physiology and biochemistry of leaf bleaching in prematurely aging maple (Acer saccharinum L.) trees. II. Functional and molecular adjustment of PSII , 2011 .
[45] R. K. Kar,et al. Inhibition of Seed Germination By Propyl Gallate, A Free Radical Scavenger and Recovery of Germination By Hydrogen Peroxide and Ethylene in Vigna Radiata , 2008 .
[46] '. RETOJ.STRASSERt,et al. POLYPHASIC CHLOROPHYLL a FLUORESCENCE TRANSIENT IN PLANTS AND CYANOBACTERIA * , 2007 .
[47] R. Strasser,et al. Analysis of the Chlorophyll a Fluorescence Transient , 2004 .
[48] M. Aluru,et al. Control of chloroplast redox by the IMMUTANS terminal oxidase. , 2004, Physiologia plantarum.
[49] R. Strasser,et al. The fluorescence transient as a tool to characterize and screen photosynthetic samples , 2000 .
[50] K. Asada. Radical Production and Scavenging in the Chloroplasts , 1996 .
[51] N. Baker. Photosynthesis and the Environment , 1996, Advances in Photosynthesis and Respiration.
[52] E. Govindje,et al. Sixty-Three Years Since Kautsky: Chlorophyll a Fluorescence , 1995 .
[53] John Moncrieff,et al. Photosynthesis: from Light to Biosphere , 1995 .
[54] W. Bilger,et al. Chlorophyll fluorescence as a nonintrusive indicator for rapid assessment of in vivo photosynthesis , 1994 .
[55] N. Adir,et al. Dynamics of photosystem II: mechanism of photoinhibition and recovery processes , 1992 .
[56] J. Barber. The photosystems: structure, function and molecular biology. , 1992 .
[57] G. Krause,et al. Chlorophyll Fluorescence and Photosynthesis: The Basics , 1991 .
[58] Stephen B. Powles,et al. Photoinhibition of Photosynthesis Induced by Visible Light , 1984 .
[59] D. Arnon. COPPER ENZYMES IN ISOLATED CHLOROPLASTS. POLYPHENOLOXIDASE IN BETA VULGARIS. , 1949, Plant physiology.