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Root growth abscisic acid

Jones, H., Leigh, R.A., Tomos, A.D. Wyn Jones, R.G. (1987). The effect of abscisic acid on cell turgor presures, solute content and growth of wheat roots. Phytochemistry, 170, 257-63. [Pg.194]

Fujii, H., Verslues, P.E., and Zhu, J.K. (2007) Identification of two protein kinases required for abscisic acid regulation of seed germination, root growth, and gene expression in Arabidopsis. Plant Cell, 19, 485 -494. [Pg.283]

In contrast to the auxins and gibberellins, abscisic acid (ABA) and ethylene usually retard cell elongation. With some exceptions (Takahashi 1972, Gaither et al. 1975, Malik and Mehan 1975 a, Van Staden and Bornman 1970) ABA is inhibitory to growth (Addicott and Lyon 1969, Milborrow 1974). ABA inhibits stem and root elongation and counteracts the promotive effects of other substances on these organs (Rehm and Cline 1973, Kaufman and Jones 1974,... [Pg.23]

Andreae WA, Venis MA, Jursic E, Dumas T (1968) Does ethylene mediate root growth inhibition by indole-3-acetic acid Plant Physiol 43 1375-1379 Anker L (1973) The auxin production of the physiological tip of the Avena coleoptile and the repression of tip regeneration by indoleacetic acid (not by naphthylacetic acid and 2,4-dichlorophenoxyacetic acid). Acta Bot Neerl 22 221-227 Anker L (1975) Auxin-synthesis inhibition by abscisic acid, and its reversal by gibberellic acid. Acta Bot Neerl 24 339-347... [Pg.62]

II. Inhibition of cell division. Am J Bot 59 450-457 El-Antably HMM, Larsen P (1974) Distribution of gibberellins and abscisic acid in geo-tropically stimulated Vida faba roots. Physiol Plant 32 322-329 Eliasson L (1969) Growth regulators of Populus tremula, I. Distribution of auxin and growth inhibitors. Physiol Plant 22 1288-1301 Eliasson L (1975) Effect of indoleacetic acid on the abscisic acid level in stem tissue. Physiol Plant 34 117-120... [Pg.66]

Friedberg SH, Davidson D (1970) Duration of S phase and cell cycles in diploid and tetraploid cells of mixoploid meristems. Exp Cell Res 61 216-218 Fuchs Y, Lieberman M (1968) Effects of kinetin, lAA, and gibberellin on ethylene production, and their interactions in growth of seedlings. Plant Physiol 43 2029-2036 Gaither DH, Lutz DH, Forrence LE (1975) Abscisic acid stimulates elongation of excised pea root tips. Plant Physiol 55 948-949... [Pg.67]

Pernet JJ, Pilet PE (1976) Indoleacetic acid movement in the root cap. Planta 128 183-184 Philipson JJ, Hillman JR, Wilkins MB (1973) Studies on the action of abscisic acid on lAA-induced rapid growth of Avena coleoptile segments. Planta 114 87-93 Phillips DA (1971) Abscisic acid inhibition of root nodule initiation in Pisum sativum. Planta 100 181-190... [Pg.74]

Pilet PE (1974) Control by the root cap on growth and georeaction of roots. In Plant growth substances 197T Hirokawa, Tokyo, pp 1104-1110 Pilet PE (1975a) Abscisic acid as a root growth inhibitor Physiological analyses. Planta... [Pg.74]

Pilet PE (1975b) Action of fusicoccin and abscisic acid on root growth. Plant Sci Lett 5 137-140... [Pg.74]

Rappaport L (1979) Does GA3 regulate cell division Plant Physiol 63 Suppl, p 32 Rauser WE, Horton RF (1975) Rapid effects of indoleacetic acid and ethylene on the growth of intact pea roots. Plant Physiol 55 443-447 Rehm MM, Cline MG (1973) Rapid growth inhibition of Avena coleoptile segments by abscisic acid. Plant Physiol 51 93-96... [Pg.75]

Basler E, McBride R (1977) Interaction of coumarin, gibberellic acid and abscisic acid in the translocation of auxin in bean seedlings. Plant Cell Physiol 18 939-947 Batra MW, Edwards KL, Scott TK (1975) Auxin transport in roots Its characteristics and relationship to growth. In Torrey JG, Clarkson DT (eds) The development and function of roots. Academic Press, London New York, pp 299-325 Batt S, Venis MA (1976) Separation and localization of two classes of auxin-binding sites in corn coleoptile membranes. Planta 130 15-21 Batt S, Wilkins MB, Venis MA (1976) Auxin binding to corn coleoptile membranes kinetics and specificity. Planta 130 7-13... [Pg.127]

Mitchell EK, Davies PJ (1975) Evidence for three different systems of movement of indoleacetic acid in intact roots of Phaseolus coccineus. Physiol Plant 33 290-294 Mitchinson GJ (1980) The dynamics of auxin transport. Proc R Soc Lond B 209 489-511 Mittelheuser CJ, van Steveninck RFM (1971) Rapid action of abscisic acid on photosynthesis and stomatal resistance. Planta 97 83-86 Morath M (1972) Some early effects of auxin and of geotropic exposure on coleoptiles. In Kaldewey H, Vardar Y (eds) Hormonal regulation in plant growth and development. Verlag Chemie, Weinheim, pp 377-381 Morgan DG (1964) Influence of a-naphthylphthalamic acid on the movement of indolyl-3-acetic acid in plants. Nature 201 476-477... [Pg.140]

Goodwin PB (1978) Phytohormones and fruit growth. In Letham DS, Goodwin PB, Higgins TJV (eds) Phytohormones and related compounds— A comprehensive treatise, Vol II. Elsevier/North Holland, Amsterdam, pp 175-214 Karmoker JL, Van Steninck RFM (1978) Stimulation of volume flow and ion flux by abscisic acid in the excised root system of Phaseolus vulgaris L. cv. Redland Pioneer. Planta (Berl) 141 37 3... [Pg.231]

Mention should be made of abscisic acid and related compounds. Abscisic acid (373) was first isolated from young cotton fruit as an abscission-accelerating principle. It has since been found to be ubiquitous in higher plants and has been detected in the roots of several plants. It is now recognized as a natural plant growth regulatory hormone. Although structure 373 is clearly that of a monocyclofarnesane and could arise from cyclization of FPP and further modification, there is some evidence that it may be a catabolic product of a carotenoid, such as violaxanthin. Considerable biosynthetic work has been carried out, but no clear-cut answer is available yet (110, 179, 276). [Pg.745]


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See also in sourсe #XX -- [ Pg.54 ]




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