Auxin (Indole-3-acetic acid), gibberellic acid (GA3), abscisic acid (ABA) and cytokinin (Zeatin) production by some species of mosses and lichens

Bu çalışmada, bazı liken ve yosun türlerinde içsel serbest, bağlı ve toplam oksin, (Ündol-3 asetik asit, IAA) gibberellik asit (GA3), absisik asit (ABA) ve sitokinin (zeatin) miktarları incelenecektir. Bu bitki büyüme düzenleyicilerinin miktarlarının tayininde spektrofotometre tekniği kullanıldı. Bulgularımız, bu araştırmada kullanılan yosun ve likenlerin bitki büyüme düzenleyicileri IAA, GA3, ABA ve zeatin ürettiğini göstermektedir.

Bazı yosun ve liken türlerinde oksin (Indol-3-asetile asit), gibberellik asit (GA3), absisik asit (ABA) ve sitokinin (Zeatin) üretimi

In this study, the levels of endogenous free, bound and total auxin (Indole-3-acetic acid, IAA), gibberellic acid (G$A_{3}$), abscisic acid (ABA) and cytokinin (zeatin) were examined in some species of mosses and lichens. For determination of the levels of these plant growth regulators, spectrophotometry was used. Our findings show that the mosses and lichens used in this study produce the plant growth regulators IAA, G$A_{3}$, ABA and zeatin.

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  • Abe H, Uchiyama M, Saito R & Muto S (1974). Plant growth regulators occurring in marine algae. Plant Growth Substances, pp. 201-206, Tokyo: Hirokava Publishing Co. Inc.
  • Ashton N W, Schulze A, Hall P & Bandurski R S (1985). Estimation of indole-3-acetic acid in gametophytes of the moss Physcomitrella patens. Planta 164: 142-144.
  • Atzorn R, Bopp M & Merdes U (1989a). The physiological role of indole acetic acid in the moss Funaria hygrometrica Hedw. II. Mutants of Funaria hygrometrica which exhibit enhanced catabolism of indole- 3-acetic acid. J Plant Physiol 135: 526-530.
  • Atzorn R, Geier U & Sandberg G (1989b). The physiological role of indole acetic acid in moss Funaria hygrometrica Hedw. I. Quantification of indole-3-acetic acid in tissue and protoplasts by enzyme immunoassay and gas chromatography-mass spectrometry. J Plant Physiol 135: 522-525.
  • Beutelmann P & Bauer L (1977). Purification and identification of a cytokinin from moss callus cells. Planta 133: 215-217.
  • Bhatla SC (1992). Endogenous IAA after tryptophane application in the wild type and an auxin-insensitive mutant (86.1=CAL 1) of the moss Funaria hygrometrica Hedw. Plant Physiol 139: 758-760.
  • Boyer GL & Dougherty SS (1988). Identification of abscisic acid in the seaweed Ascophyllum nodosum. Phytochemistry 27: 1521-1522.
  • Du Buy HG & Olson RA (1937). The presence of growth regulators during the early development of Fucus. Amer Jour Bot 24: 609- 611.
  • Hirch R, Hartung W & Gimmler H (1989). Abscisic acid content of algae under stress. Botanica Acta 102: 326-334.
  • Hussain A & Boney AD (1969). Isolation of kinetin-like substances from Laminaria digitata. Nature 14: 17-21.
  • Hussain A & Boney AD (1973). Hydrophylic growth inhibitors from Laminaria digitata and Ascophllum nodosum. New Phytol 72: 403- 410.
  • Jayaswal RK & Johri MM (1985). Occurence and biosynthesis of auxin in protonema of the moss Funaria hygrometrica. Phytochemistry 24:1211-1214.
  • Jennings RC & Mclomb AJ (1967). Gibberellins in the red algae Hypnea musciformis (Wulf.) Lamour. Nature 215: 872-873.
  • Jennings RC (1968). Gibberellins as endogenous growth regulators in green and brown algae. Planta 80: 34-42.
  • Jennings RC (1969). Gibberellin antagonism by material from a brown algae. New Phytol 68: 683-688.
  • Kingman AR, & Moore J (1982). Isolation, purification and quantitation of several growth regulating substances in Ascophyllum nodosum (Phaeophyta). Botanica Marina 25: 149-154.
  • Moss B (1965). Apical dominance in Ficus vesiculosus. New Phytol 64: 387-399.
  • Mowat JA (1963). Gibberellin-like substances in algae. Nature 200: 453- 455.
  • Mowat JA (1965). A survey of results on the occurrence of auxins and gibberellins in algae. Botanica Marina 8:149-155.
  • Radley M (1961). Gibberellic acid-like substances in plants. Nature 191: 684-685.
  • Sabbatini MR, Arguelo JA, Fernandes OA & Bottini RA (1987). Dormancy and growth inhibitor levels ioopores of Chara contrata A. Braun ex. Kuetz. (Charophyta). Aqual Bot 28:189-194.
  • Thomas RJ, Harrison MA, Taylor J & Kaufman PB (1983). Endogenous auxin and ethylene in Pellia (Bryophyta). Plant Physiol 73: 395- 397.
  • Tietz A & Kasprik W (1986). Identification of abscisic acid in green algae. Biochem Physiol Pflanzen 181: 269-274.
  • Tietz A, Koehler R, Ruttkowski U & Kasprik W (1989). Further investigations on the occurrence and the effects of abscisic acid in algae. Biochem Physiol Pflanzen 184: 259-266.
  • Ünyayar S, Topcuoğlu ŞF, Ünyayar A (1996). A modified method for extraction and identification of indole-3-acetic acid (IAA), gibberellic acid (GA3), abscisic acid (ABA) and zeatin produced by Phanerochate chrysosporium ME 446. Bulg J Plant Physiol 22 (3- 4): 105-110.
  • Van Der Weij HG (1933). On the occurrence of growth substances in marine algae. Proc Kon Akad Wetensch Amsterdam 36: 759-760.
  • Van Overbeek J (1940). Auxin in marine algae. Plant Physiol 15: 291- 299.
  • Wang TL, Cove DJ, Beutelmann P & Hartmann E (1980). Isopentenyladenine from mutants of the moss Psychomitrella patens. Phytochemistry 19:1103-1105.
  • Wang TL, Beutelmann P & Cove DJ (1981a). Cytokinin biosynthesis in mutants of moss Psychomitrella patens. Plant Physiol 68: 739- 744.
  • Wang TL, Horgan R & Cove DJ (1981b). Cytokinin from the moss Psychomitrella patens, Plant Physiol 68: 735-738.