The Role of Chlorophyll Fluorescence in The Detection of Stress Conditions in Plants
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[1] N. Baker,et al. Evaluation of a technique for the measurement of chlorophyll fluorescence from leaves exposed to continuous white light , 1985 .
[2] W. L. Butler,et al. Effects of red and far-red light on the fluorescence yield of chlorophyll in vivo. , 1962, Biochimica et biophysica acta.
[3] P. Kriedemann,et al. Photosynthetic dysfunction and in vivo changes in chlorophyll a fluorescence from manganese-deficient wheat leaves , 1985 .
[4] H. Lichtenthaler,et al. Light-Induced Accumulation and Stability of Chlorophylls and Chlorophyll-Proteins during Chloroplast Development in Radish Seedlings , 1981 .
[5] G. N. Brown,et al. Chlorophyll fluorescence monitoring of freezing point exotherms in leaves. , 1979, Cryobiology.
[6] N. Baker,et al. Analysis of the induction of chlorophyll fluorescence in leaves and isolated thylakoids: contributions of photochemical and non-photochemical quenching , 1983, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[7] N. Baker,et al. Analysis of the slow phases of the in vivo chlorophyll fluorescence induction curve. Changes in the redox state of photosystem II electron acceptors and fluorescence emission from photosystems I and II. , 1981, Biochimica et biophysica acta.
[8] H. Lichtenthaler,et al. Determination of Prenylquinones in Green Photosynthetically Active Moss and Liver Moss Tissues , 1977 .
[9] J. Berry,et al. Photosynthetic response and adaptation to high temperature in desert plants : a comparison of gas exchange and fluorescence methods for studies of thermal tolerance. , 1984, Plant physiology.
[10] H. K. Lichtenthaler,et al. Distribution and Effects of Bentazon in Crop Plants and Weeds , 1982 .
[11] J. Briantais,et al. 18 – Chlorophyll a Fluorescence of Higher Plants: Chloroplasts and Leaves , 1986 .
[12] E. Stoller,et al. Chlorophyll Fluorescence Assay for the Determination of Triazine Resistance , 1981, Weed Science.
[13] I. Ferguson,et al. Comparison of chlorophyll fluorescence with several other techniques used to assess chilling sensitivity in plants , 1986 .
[14] M. Voss,et al. Effect of UV Irradiation on Different Partial Reactions of the Primary Processes of Photosynthesis , 1986 .
[15] H. Lichtenthaler,et al. The Importance of Blue Light for the Development of Sun-Type Chloroplasts , 1980 .
[16] H. Lichtenthaler,et al. Chlorophyll‐protein levels and degree of thylakoid stacking in radish chloroplasts from high‐light, low‐light and bentazon‐treated plants , 1982 .
[17] L. Björn,et al. Effects of Ultraviolet Radiation on Fluorescence Induction Kinetics in Isolated Thylakoids and Intact Leaves , 1986 .
[18] G. Schmuck,et al. Application of chlorophyll fluorescence in ecophysiology , 1986, Radiation and environmental biophysics.
[19] J. Gasquez,et al. Observation de la fluorescence sur feuille entiere et mise en evidence de la resistance chloroplastique a l'atrazine chez Chenopodium album L. et Poa annua L. , 1978 .
[20] L. Duysens. Introduction to (Bacterio)chlorophyll Emission: A Historical Perspective , 1986 .
[21] Govindjee,et al. Chlorophyll A fluorescence transient as an indicator of water potential of leaves , 1981 .
[22] P. Kramer,et al. Responses of Plants to Environmental Stresses , 1973 .
[23] U. Schreiber,et al. Detection of rapid induction kinetics with a new type of high-frequency modulated chlorophyll fluorometer. , 1986 .
[24] A. Trebst,et al. On the role of the QB protein of PS II in photoinhibition , 1986 .
[25] H. Lichtenthaler,et al. PHOTOOXIDATIVE CHANGES IN PIGMENT COMPOSITION AND PHOTOSYNTHETIC ACTIVITY OF AIR-POLLUTED SPRUCE NEEDLES (PICEA ABIES L.) , 1984 .
[26] Prof. Dr. Theodor Butterfass. Patterns of Chloroplast Reproduction , 1979, Cell Biology Monographs.
[27] R. Strasser,et al. The yield of energy transfer and the spectral distribution of excitation energy in the photochemical apparatus of flashed bean leaves. , 1977, Biochimica et biophysica acta.
[28] G. N. Brown,et al. Effects of chill stress on prompt and delayed chlorophyll fluorescence from leaves. , 1977, Plant physiology.
[29] E. Weis. Short term acclimation of spinach to high temperatures: effect on chlorophyll fluorescence at 293 and 77 Kelvin in intact leaves. , 1984, Plant physiology.
[30] H. V. Gorkom,et al. 10 - Fluorescence Measurements in the Study of Photosystem II Electron Transport , 1986 .
[31] N. Baker,et al. Photosynthetic Electron Transport During Senescence of the Primary Leaves of Phaseolus vulgaris L.III. KINETICS OF CHLOROPHYLL FLUORESCENCE EMISSION FROM INTACT LEAVES , 1981 .
[32] W. Bilger,et al. Rapid assessment of stress effects on plant leaves by chlorophyll fluorescence measurements , 1987 .
[33] G. Laskay,et al. Effects of Pyridazinone Herbicides during Chloroplast Development in Detached Barley Leaves I. Effects on Pigment Accumulation and Fluorescence Properties , 1983 .
[34] J. Viénot,et al. Use of Chlorophyll Fluorescence Induction Kinetics to Study Translocation and Detoxication of DCMU-Type Herbicides in Plant Leaves , 1984 .
[35] D. Walker,et al. Some effects of changes in gas phase on the steady-state chlorophyll a fluorescence exhibited by illuminated leaves , 1983, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[36] N. Hallam,et al. Ultrastructural and Compositional Changes in Chloroplast Thylakoids of Leaves of Borya nitida during Humidity-sensitive Degreening , 1982 .
[37] M. Tevini,et al. Inhibition of photosynthetic activity by UV‐B radiation in radish seedlings , 1983 .
[38] F. D. Jong,et al. Effects of Leaf Age and Growth Temperature on Temperature Dependent Chlorophyll Fluorescence Induction in Cucumber Leaves , 1984 .
[39] C. R. Ireland,et al. An analysis of the chlorophyll-fluorescence transients from pea leaves generated by changes in atmospheric concentrations of CO2 and O2 , 1985 .
[40] S. C. Wong,et al. Simultaneous Measurements of Steady State Chlorophyll a Fluorescence and CO(2) Assimilation in Leaves: The Relationship between Fluorescence and Photosynthesis in C(3) and C(4) Plants. , 1986, Plant physiology.
[41] H. Lichtenthaler. CHLOROPHYLL AND CAROTENOIDS: PIGMENTS OF PHOTOSYNTHETIC BIOMEMBRANES , 1987 .
[42] N. Baker,et al. Rapid chlorophyll fluorescence technique for the study of penetration of photosynthetically active herbicides into leaf tissue , 1985 .
[43] Stephen B. Powles,et al. Photoinhibition of Photosynthesis Induced by Visible Light , 1984 .
[44] H. Lichtenthaler. Influence of Environmental Factors on Composition and Function of the Photo-Synthetic Apparatus , 1984 .
[45] M. Tevini,et al. Inhibition of Photosystem II by UV-B-Radiation , 1985 .
[46] M. Havaux,et al. Effects of chilling temperatures on prompt and delayed chlorophyll fluorescence in maize and barley leaves , 1984 .
[47] C. Critchley,et al. Leaf Chlorophyll Fluorescence as an Indicator of High Light Stress (Photoinhibition) in Cucumis sativus L , 1981 .
[48] H. Lichtenthaler,et al. Carotenoid Composition of Chlorophyll-Carotenoid-Proteins from Radish Chloroplasts , 1982 .
[49] H. Lichtenthaler,et al. Effect of High Light and High Light Stress on Composition, Function and Structure of the Photosynthetic Apparatus , 1983 .
[50] A. Ali,et al. A COMPARATIVE ANALYSIS OF LEAF CHLOROPHYLL FLUORESCENCE, HILL REACTION ACTIVITY AND 14C-ATRAZINE TRACER STUDIES TO EXPLAIN DIFFERENTIAL ATRAZINE SUSCEPTIBILITY IN WILD TURNIP RAPE (Brassica campestris) BIOTYPES , 1984 .
[51] C. Potvin. Effect of Leaf Detachment on Chlorophyll Fluorescence during Chilling Experiments. , 1985, Plant physiology.
[52] H. Lichtenthaler,et al. Adaptation of Chloroplast-Ultrastructure and of Chlorophyll- Protein Levels to High-Light and Low-Light Growth Conditions , 1982 .
[53] H. Lichtenthaler. Functional Organization of Carotenoids and Prenylquinones in the Photosynthetic Membrane , 1987 .
[54] K. Shimazaki,et al. Reversible Inhibition of the Photosynthetic Water-Splitting Enzyme System by SO2-Fumigation Assayed by Chlorophyll Fluorescence and EPR Signal in Vivo , 1984 .
[55] W. Downton,et al. Osmotic Adjustment and Chlorophyll Fluorescence in Water- and Salt-Stressed Plants , 1984 .
[56] W. Downton,et al. Chlorophyll fluorescence and water relations of salt-stressed plants , 1985 .
[57] S. A. Thomas,et al. Chloroplast ultrastructure, chlorophyll fluorescence, and pigment composition in chilling-stressed soybeans. , 1984, Plant physiology.
[58] J. Abadía,et al. Leaf phosphate status and photosynthesis in vivo: Changes in light scattering and chlorophyll fluorescence during photosynthetic induction in sugar beet leaves , 1986 .
[59] U. Schreiber,et al. Rapid light‐induced changes of energy distribution between photosystems I and II , 1976 .
[60] H. Lichtenthaler,et al. Chlorophyll fluorescence spectra of green bean leaves , 1987 .
[61] N. Lebedev,et al. Changes in chloroplast absorption and fluorescence spectra during ontogeny of primary bean leaves , 1985 .
[62] R. Graham,et al. The Critical Concentration of Manganese in Field-grown Wheat , 1985 .
[63] K. Steinback,et al. Chloroplast phosphoproteins: regulation of excitation energy transfer by phosphorylation of thylakoid membrane polypeptides. , 1980, Proceedings of the National Academy of Sciences of the United States of America.
[64] R. Smillie,et al. Heat Injury in Leaves of Alpine, Temperate and Tropical Plants , 1979 .
[65] U. Schreiber,et al. Practical Applications of Fluorometric Methods to Algae and Higher Plant Research , 1986 .
[66] B. Kok,et al. On the inhibition of photosynthesis by intense light. , 1956, Biochimica et biophysica acta.
[67] A. Holzwarth,et al. Time-resolved picosecond fluorescence spectra of the antenna chlorophylls in Chlorella vulgaris. Resolution of Photosystem I fluorescence , 1985 .
[68] George Papageorgiou,et al. 6 – Chlorophyll Fluorescence: An Intrinsic Probe of Photosynthesis , 1975 .
[69] Hartmut K. Lichtenthaler,et al. Chlorophyll Fluorescence Signatures of Leaves during the Autumnal Chlorophyll Breakdown , 1987 .
[70] Strasser Rj. Induction phenomena in green plants when the photosynthetic apparatus starts to work. , 1973 .
[71] Gregory N. Brown,et al. The effects of chilling stress on the chlorophyll fluorescence of leaves , 1977 .
[72] J. B. Bucher,et al. Simultane Messung der Chlorophyll Fluoreszenz‐Kinetik bei verschiedenen Wellenlángen als rasches Verfahren zur Frühdiagnose von Immissionsbelastungen an Waldbäumen: Ozoneinwirkungen auf Buchen und Pappeln , 1987 .
[73] H. Lichtenthaler,et al. [The formation of lipoquinones in tissue cultures (author's transl)]. , 1975, Planta medica.
[74] M. Tevini,et al. Action of UV‐B radiation on photosynthetic primary reactions in spinach chloroplasts , 1983 .
[75] N. Baker,et al. A quantitative determination of photochemical and non-photochemical quenching during the slow phase of the chlorophyll fluorescence induction curve of bean leaves , 1984 .
[76] J. Briantais,et al. Photoinduced quenching of chlorophyll fluorescence in intact chloroplasts and algae. Resolution into two components , 1982 .
[77] W. Larcher,et al. Criteria for chilling stress in Saintpaulia ionantha , 1987 .