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Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 9, 1992 - Issue 4
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Original Article

Effects of Tetraethylammoniumchloride (TEA), Vanadate, and Alkali Ions on the Lateral Leaflet Movement Rhythm of Desmodium motorium (Houtt.) Merr

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Pages 269-277 | Received 10 Jun 1991, Accepted 27 Oct 1991, Published online: 07 Jul 2009

References

  • Bose JC. Researchers on the irritability of plants. Longmans, Green, New York, Bombay, Calcutta 1913
  • Antkowiak B, Mayer W-E, Engelmann W. Oscillations of the membrane potential of pulvini motor cells in situ in relation to leaflet movements of Desmodium motorium. J Exp Botany 1991; 42: 901–10
  • Antkowiak B, Engelmann W. Ultradian rhythms in the pulvini of Desmodium gyrans–an electro-physical approach. J Interdiscipl Cycle Res 1989; 20: 164–5
  • Lee Y. Ion movements that control pulvinar curvature. The pulvinus: motor organ for leaf movement, vol. 3, RL Satter, HL Gorton, TC Vogelmann. American Society of Plant Physiologists, Rockville 1990; 130–41
  • Engelmann W, Schrempf M. Membrane models for circadian rhythms. Photochem Photobiol Rev 1980; 5: 49–86
  • Edmunds LN. Cellular and molecular bases of biological clocks: models and mechanisms for circadian timekeeping. Springer-Verlag, Berlin 1988
  • Schuster J, Engelmann W. Recording of rhythms in organisms using video-digitizing. Chronobology: its role in clinical medicine, general biology and agriculture. Part B, DK Hayes, JE Pauly, RJ Reiter. Wiley-Liss, New York, Chichester, Brisbane, TorontoSingapore 1990; 389–96
  • Hille B. Ionic channels of excitable membranes. Sinauer Association, Sunderland, Mass 1984
  • Hedrich R, Schroeder JI. The physiology of ion channels and electrogenic pumps in higher plants. Annu Rev Plant Physiol 1989; 40: 539–69
  • Tester M. Plant ion channels: whole-cell and single-channel studies. New Phytol 1990; 114: 305–40
  • Moran N, Ehrenstein G, Iwasa K, Mischke C, Bare C, Satter RL. Potassium channels in motor cells of Samanea saman:a patch-clamp study. Plant Physiol 1988; 88: 643–8
  • Moran N, Fox D, Satter RL. Interaction of the depolarization-activated K+ channel of Samanea saman with inorganic ions: a patch-clamp study. Plant Physiol 1990; 94: 424–31
  • Sze H. H+-translocating ATPases of plasma membrane and tonoplast of plant cells. Physiol Plant 1984; 61: 683–91
  • Serrano R. Plasma membrane ATPase. The plant plasma membrane, C Larsson, JM Moller. Springer-Verlag, Berlin, Heidelberg 1990; 127–53
  • Mitsuno T, Sibaoka T. Rhythmic electrical potential change of motor pulvinus in lateral leaflet of Codariocalyx motorius. Plant Cell Physiol 1989; 30: 1123–7
  • Eckhardt D, Engelmann W. Involvement of plasmalemma ATPases in circadian rhythm of the succulent herb Kalanchoe blossfeldiana (Crassulaceae). Ind J Exp Biol 1984; 22: 189–94
  • The pulvinus: motor organ for leaf movement, RL Satter, HL Gorton, TC Vogelmann. American Society of Plant Physiologists, Rockville 1990; vol. 3
  • Johnsson A, Engelmann W, Antkowiak B. Leaf movements in nyctinastic plants as hands of the biological clock. The pulvinus: motor organ for leaf movement, RL Satter, HL Gorton, TC Vogelmann. American Society of Plant Physiologists, Rockville 1990; vol. 3: 79–100
  • Engelmann W. Effects of lithium salts on circadian rhythms. Chronobiology and psychiatric disorders, A Halaris. Elsevier Science Publishers, New York 1987; 263–89
  • KJemmfuss H, Kripke DF. Effects of lithium on circadian rhythms. Chronobiology, B Lommer. Marcel Dekker, New York, Basel 1989; 281–97
  • Mack J. Das Multioszillatorsystem von Dmsphila. Ein Vergleich der tagesperiodischen Steuerung der Laufaktivitat und des Schltipfens. Dissertation, University of Tubingen, TubingenGermany 1980
  • Kondo T. The period of circadian rhythms in Lemna gibba G3 is influenced by the substitution of rubidium for potassium. Plant Cell Physiol 1984; 25: 1313–7
  • Rinnan T, Johnsson A. Effects of alkali ions on the circadian leaf movements of Oxalis regnellii. Physiol Plant 1986; 66: 139–43
  • Engelmann W, Casper H. Effect of RbCl on the circadian rhythm of locomotor activity in the cockroach Leucophaea maderae. J Interdiscipl Cycle Res 1984; 15: 17–22
  • Eskin A. Phase shifting a circadian rhythm in the eye of Aplysia by high potassium pulses. J. Comp Physiol 1972; 80: 353–76
  • Biinning E, Moser J. Influence of valinomycin on circadian leaf movement of Phaseolus. Proc Natl AcadSci USA 1972; 69: 2732
  • Memon AR. Characterization of plasma membrane bound cation-stimulated ATPase isolated from the roots of Cucumis salivus. Can J Bot 1988; 66: 1470–3
  • Schroeder JI, Hedrich R. Involvement of ion channels and active transport in osmoregulation and signaling of higher plant cells. TIBS 1989; 14: 187–92
  • Burgoyne RD. A model for the molecular basis of circadian rhythms involving monovalent ion-mediated translational control. FEBS Lett 1978; 94: 17–9

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