A role of phytochrome in photoperiodic induction: Two-phytochrome-pool theory
暂无分享,去创建一个
[1] P. Lumsden,et al. The perception of dusk signals in photoperiodic time-measurement , 1984 .
[2] M. Furuya,et al. Studies on the Photoreceptors for the Promotion and Inhibition of Flowering in Dark-Grown Seedlings of Pharbitis nil Choisy , 1983 .
[3] N. Katsura,et al. Phytochrome in Pharbitis nil during and after de‐etiolation , 1982 .
[4] E. Schäfer,et al. Photoperiodism and rhythmic response to light , 1982 .
[5] A. Takimoto,et al. Spectral Dependence of Night-break Effect on Photoperiodic Floral Induction in Lemna paucicostata 441 , 1982 .
[6] J. Brockmann,et al. ANALYSIS OF Pfr DESTRUCTION IN AMARANTHUS CAUDATUS L EVIDENCE FOR TWO POOLS OF PHYTOCHROME * , 1982 .
[7] E. Schäfer,et al. PHYTOCHROME DESTRUCTION IN DARK ‐ AND LIGHT‐GROWN AMARANTHUS CAUDATUS SEEDLINGS , 1981 .
[8] A. Kato. Effect of interruption of the nyctoperiod with an R/FR-mixture of various ratios of red and far-red light on flowering in Lemna gibba G3 , 1979 .
[9] T. Ogawa. Stomatal responses to light and CO2 in greening wheat leaves , 1979 .
[10] W. Haupt,et al. «Ageing» of Phytochrome Pfr in Mesotaenium , 1979 .
[11] Y. Ogawa,et al. Establishment of photoperiodic sensitivity by benzyladenine and a brief red irradiation in dark grown seedlings of Pharbitis nil Chois. , 1979 .
[12] D. Marmé. PHYTOCHROME: MEMBRANES AS POSSIBLE SITES OF PRIMARY ACTION , 1977 .
[13] A. Galston,et al. Circadian Rhythmicity in Excised Samanea Pulvini: II. Resetting the Clock by Phytochrome Conversion. , 1976, Plant physiology.
[14] D. Friend. Light Rquirements for Photoperiodic Sensitivity in Cotyledons of Dark‐grown Pharbitis nil , 1975 .
[15] K. Manabe. Distribution and nonphotochemical transformation of phytochrome in subcellular fractions from pisum epicotyls. , 1975, Plant physiology.
[16] K. Manabe,et al. Phytochrome-dependent Reduction of Nicotinamide Nucleotides in the Mitochondrial Fraction Isolated from Etiolated Pea Epicotyls. , 1974, Plant physiology.
[17] W. Hillman. Entrainment of Lemna CO(2) Output Through Phytochrome. , 1971, Plant physiology.
[18] R. Coleman,et al. Immunocytochemical localization of phytochrome. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[19] M. Furuya,et al. Factors controlling rates of nonphotochemical transformation of Pisum phytochrome in vitro , 1971 .
[20] A. O. Klein. Persistent photoreversibility of leaf development. , 1969, Plant physiology.
[21] A. Galston. Microspectrophotometric evidence for phytochrome in plant nuclei. , 1968, Proceedings of the National Academy of Sciences of the United States of America.
[22] E. Wagner,et al. Rhythmic Processes in Plants , 1968 .
[23] D. Friend. Photoperiodic Responses of Brassica campestris cv. Ceres , 1968 .
[24] A. Taylor. In vitro phytochrome dark reversion process. , 1968, Plant physiology.
[25] S. Hendricks,et al. EFFECTS OF RADIATION ON FLOWERING OF HYOSCYAMUS NIGER , 1967 .
[26] W. Hillman. The Physiology of Phytochrome , 1967 .
[27] H. B. Reid,et al. Control of Flowering of Xanthium pensylvanicum by Red and Far-red Light. , 1967, Plant physiology.
[28] W. Klein,et al. Spectrophotometric Measurements of Phytochrome in vivo and Their Correlation with Photomorphogenic Responses of Phaseolus. , 1967, Plant physiology.
[29] W. Briggs,et al. The physiological versus the spectrophotometric status of phytochrome in corn coleoptiles. , 1966, Plant physiology.
[30] L. Loercher. Phytochrome changes correlated to mesocotyl inhibition in etiolated Avena seedlings. , 1966, Plant physiology.
[31] W. Hillman. Responses of Avena and pisum tissues to phytochrome conversion by red light. , 1966, Plant physiology.
[32] K. Marushige,et al. Effects of Light on the Appearance of Photoperiodic Sensitivity of Etiolated. Pharbitis nil Seedlings , 1966 .
[33] L. T. Evans,et al. THE DEPENDENCE OF FLOWERING IN SEVERAL LONG‐DAY PLANTS ON THE SPECTRAL COMPOSITION OF LIGHT EXTENDING THE PHOTOPERIOD , 1965 .
[34] A. Takimoto,et al. Kinetic Studies on Pigment Systems Concerned with the Photoperiodic Response in Pharbitis nil. , 1965, Plant physiology.
[35] A. Takimoto,et al. Studies on Red Light Interruption in Relation to Timing Mechanisms Involved in the Photoperiodic Response of Pharbitis nil. , 1965, Plant physiology.
[36] A. Takimoto,et al. Effect of Far-Red Light and its Interaction with Red Light in the Photoperiodic Response of Pharbitis nil. , 1965, Plant physiology.
[37] B. Cumming,et al. RHYTHMIC FLOWERING RESPONSES AND PHYTOCHROME CHANGES IN A SELECTION OF CHENOPODIUM RUBRUM , 1965 .
[38] W. Haupt. Perception of Environmental Stimuli Orienting Growth and Movement in Lower Plants , 1965 .
[39] W. Hillman. Phytochrome Conversion by Brief Illumination and the Subsequent Elongation of Etiolated Pisum Stem Segments , 1965 .
[40] J. V. Evans,et al. INTERRELATIONSHIPS OF ERYTHROCYTE CHARACTERS AND OTHER CHARACTERS OF BRITISH AND ZEBU CROSSBRED BEEF CATTLE. , 1965, Australian journal of biological sciences.
[41] W. L. Butler,et al. Dark Transformations of Phytochrome in vivo. II. , 1965, Plant physiology.
[42] R. J. Downs,et al. Roles of Active Phytochrome in Control of Flowering of Xanthium pensylvanicum , 1964, Botanical Gazette.
[43] Y. Oda,et al. INHIBITORY EFFECT OF FAR-RED LIGHT ON THE FLOWERING OF XANTHIUM PENSYLVANICUM , 1964 .
[44] J. Torrey,et al. The Reversible Inhibition by Red and Far-Red Light of Auxin-Induced Lateral Root Initiation in Isolated Pea Roots. , 1964, Plant physiology.
[45] A. Takimoto,et al. Effect of Temperature and Preconditioning on Photoperiodic Response of Pharbitis nil. , 1964, Plant physiology.
[46] H. Fredericq. Conditions Determining Effects of Far-Red and Red Irradiations on Flowering Response of Pharbitis nil. , 1964, Plant physiology.
[47] K. C. Hamner,et al. Photoperiodic Flowering Response of Biloxi Soybean in 72-Hour Cycles. , 1964, Plant physiology.
[48] H. A. Borthwick. Phytochrome Action and Its Time Displays , 1964, The American Naturalist.
[49] D. Vince,et al. Some Effects of Wave‐Length of the Supplementary Light on the Photoperiodic Behaviour of the Long‐Day Plants, Carnation and Lettuce , 1964 .
[50] D. Friend,et al. THE EFFECT OF LIGHT INTENSITY AND TEMPERATURE ON FLORAL INITIATION AND INFLORESCENCE DEVELOPMENT OF MARQUIS WHEAT , 1963 .
[51] S. Hendricks,et al. Inhibition of Flowering of Chenopodium rubrum by Prolonged Far-Red Radiation , 1963, Botanical Gazette.
[52] H. Lane. Effect of Light Quality on Maturity in the Milo Group Sorghum 1 , 1963 .
[53] K. C. Hamner,et al. Effect of Light Quality on the Rhythmic Flowering Response of Biloxi Soybean. , 1963, Plant physiology.
[54] B. Cumming. EVIDENCE OF A REQUIREMENT FOR PHYTOCHROME-Pfr IN THE FLORAL INITIATION OF CHENOPODIUM RUBRUM , 1963 .
[55] H. Cathey,et al. Cyclic Lighting for Promotion of Flowering of Sweetclover, Melilotus alba Desr.1 , 1963 .
[56] S. Hendricks,et al. CHAPTER 14 – Control of Plant Growth by Light , 1963 .
[57] A. Takimoto. ON THE LIGHT CONTROLLING FLOWER INITIATION OF SILENE ARMERIA , 1961 .
[58] S. Hendricks,et al. Failure of Photoreversible Control of Flowering in Pharbitis nil , 1960, Botanical Gazette.
[59] D. Vince. Low temperature effects on the flowering of Chrysanthemum morifolium Ramat. , 1960 .
[60] K. Norris,et al. DETECTION, ASSAY, AND PRELIMINARY PURIFICATION OF THE PIGMENT CONTROLLING PHOTORESPONSIVE DEVELOPMENT OF PLANTS. , 1959, Proceedings of the National Academy of Sciences of the United States of America.
[61] W. W. Schwabe. Studies of Long-day Inhibition in Short-day Plants , 1959 .
[62] S. Hendricks,et al. Photoreversible Control of Elongation of Pinto Beans and Other Plants under Normal Conditions of Growth , 1957, Botanical Gazette.
[63] A. Takimoto. Photoperiodic Induction in Silene Armeria as Influenced by Various Light Sources , 1957 .
[64] R. J. Downs. Photoreversibility of Flower Initiation. , 1956, Plant physiology.
[65] R. J. Downs. Photoreversibility of Leaf and Hypocotyl Elongation of Dark Grown Red Kidney Bean Seedlings. , 1955, Plant physiology.
[66] E. H. Toole,et al. Action of Light on Lettuce-Seed Germination , 1954, Botanical Gazette.
[67] J. L. Liverman,et al. Biochemistry of the Photoperiodic Response the High-Intensity-Light Reaction , 1953, Botanical Gazette.
[68] M. W. Parker,et al. The Reaction Controlling Floral Initiation. , 1952, Proceedings of the National Academy of Sciences of the United States of America.
[69] D. Carr. Notizen: A critical experiment on Bünning' s theory of Photoperiodism , 1952 .
[70] M. W. Parker,et al. Action Spectrum for the Photoperiodic Control of Floral Initiation of the Long-Day Plant Hyoscyamus niger , 1950, Botanical Gazette.
[71] M. W. Parker,et al. Action Spectrum for Photoperiodic Control of Floral Initiation of a Long- Day Plant, Wintex Barley (Hordeum vulgare) , 1948, Botanical Gazette.
[72] H. Claes,et al. Die Blütenbildung von Hyoscyamus niger in 48-stündigen Licht-Dunkel-Zyklen und in Zyklen mit aufgeteilten Lichtphasen , 1947 .
[73] M. W. Parker,et al. Action Spectrum for the Photoperiodic Control of Floral Initiation of Short-Day Plants , 1946, Botanical Gazette.
[74] K. C. Hamner. Interrelation of Light and Darkness in Photoperiodic Induction , 1940, Botanical Gazette.