Wounding-induced cell wall pH shifts in coleoptile segments of various Poaceae
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[1] D. Köhler. Über die Beziehungen zwischen der Länge von Haferkoleoptilen und der Wachstumsgeschwindigkeit ihrer isolierten Ausschnitte , 1956, Planta.
[2] P. Stark. Weitere Untersuchungen über die Wuchshormone der Haferkoleoptile , 1930, Naturwissenschaften.
[3] E. Weiler,et al. Levels of indole-3-acetic acid in intact and decapitated coleoptiles as determined by a specific and highly sensitive solid-phase enzyme immunoassay , 1981, Planta.
[4] M. Cline,et al. Accelerated endogenous growth in Avena coleoptile segments , 2004, Planta.
[5] Z. Burdach,et al. Comparative investigation of auxin and fusicoccin-induced growth and H-extrusion in coleoptile segments of Zea mays L. , 1995 .
[6] R. Ehwald,et al. Transient changes in length and growth of wheat coleoptile segments following treatments with osmotica and auxin. , 1993, Physiologia plantarum.
[7] R. Cleland,et al. The Acid Growth Theory of auxin-induced cell elongation is alive and well. , 1992, Plant physiology.
[8] H. Felle,et al. Control of apoplast pH in corn coleoptile segments. I : The endogenous regulation of cell wall pH , 1991 .
[9] H. Felle,et al. Control of Apoplast pH in Corn Coleoptile Segments. II: The Effects of Various Auxins and Auxin Analogues , 1991 .
[10] J. Digby,et al. The Role of the Coleoptile Apex in Controlling Organ Elongation I. THE EFFECTS OF DECAPITATION AND APICAL INCISIONS , 1988 .
[11] R. Firn,et al. The Role of the Coleoptile Apex in Controlling Organ Elongation II. EFFECTS OF AUXIN SUBSTITUTION AND AUXIN TRANSPORT INHIBITORS ON DECAPITATED COLEOPTILES , 1988 .
[12] R. Hertel,et al. A comparison of the auxin specificity of medium acidification and elongation in maize coleoptiles , 1984 .
[13] R. Hatfield,et al. IAA-Induced Growth Responses of Decapitated Corn Seedlings: Indications of Two Apparent Adaptations with a Possible Role in Gravitropism. , 1984, Plant physiology.
[14] M. Iino,et al. Sources of Free IAA in the Mesocotyl of Etiolated Maize Seedlings. , 1982, Plant physiology.
[15] J. Hall,et al. Medium Acidification by Auxin- and Fusicoccin-Treated Peeled Stem Segments from Etiolated Seedlings of Pisum sativum , 1981 .
[16] R. Prat. Gradient of Growth, Spontaneous Changes in Growth Rate and Response to Auxin of Excised Hypocotyl Segments of Phaseolus aureus. , 1978, Plant physiology.
[17] M. Evans,et al. Time-dependent Changes in the Auxin Sensitivity of Coleoptile Segments: Apparent Sensory Adaptation. , 1978, Plant physiology.
[18] M. Evans,et al. Further characterization of the spontaneous growth response in Zea coleoptile segments , 1977 .
[19] P. J. Davies,et al. On the Relationship between Extracellular pH and the Growth of Excised Pea Stem Segments. , 1977, Plant physiology.
[20] J. Sirois,et al. Importance of Time after Excision and of pH on the Kinetics of Response of Wheat Coleoptile Segments to Added Indoleacetic Acid. , 1977, Plant physiology.
[21] J. Sirois,et al. Simple photometric auxanometers of high sensitivity. , 1976, Plant physiology.
[22] M. Evans,et al. The nature of spontaneous changes in growth rate in isolated coleoptile segments. , 1975, Plant physiology.
[23] R. Colombo,et al. Evidence for the coupling of proton extrusion to K+ uptake in pea internode segments treated in fusicoccin or auxin , 1974 .