共 25 条
- [1] Abeles A.L., Abeles F.B., Biochemical pathway of stress-induced ethylene, PLANT PHYSIOLOGY, 50, pp. 496-498, (1972)
- [2] Begg J.E., Wright M.J., Growth and development of leaves from intercallary meristems in Phalaris arundinacea L, Nature, 194, pp. 1097-1098, (1962)
- [3] Boller T., Regulation of the biosynthetic pathway of ethylene in response to pathogen stress, Physiol. Plant., 79, (1990)
- [4] Boller T., Rende H., Regulation of wound ethylene synthesis in plants, Nature, 286, pp. 259-260, (1980)
- [5] Fuchs Y., Lieberman M., Effects of kinetin, IAA, and gibberellin on ethylene production, and their interactions in growth of seedlings, PLANT PHYSIOLOGY, 43, pp. 2029-2036, (1968)
- [6] Goeschl J.D., Rappaport L., Pratt H.K., Ethylene as a factor regulating the growth of pea epicotyls subjected to physical stress, PLANT PHYSIOLOGY, 41, pp. 877-884, (1966)
- [7] Hyodo H., Tanaka K., Yoshiaka J., Induction of l-aminocyclopropane-l-carboxylic acid synthase in wounded mesocarp tissue of winter squash fruit and the effects of ethylene, Plant Cell Physiol., 26, pp. 161-167, (1985)
- [8] Ievinsh G., Iljin V., Kreicbergs O., Romanovskaya O., Effect of ethephon on the activity of the ethylene-forming enzyme and the biosynthesis of ethylene in winter rye seedlings, Biochemie und Physiologie der Pflanzen, 186, pp. 221-228, (1990)
- [9] Ievinsh G., Kreicbergs O., Endogenous rhythmicity of ethylene production in growing intact cereal seedlings, Plant Physiol., 100, pp. 1389-1391, (1992)
- [10] Ievinsh G., Romanovskaya O., Accelerated lignification as a possible mechanism of growth inhibition in winter rye seedlings caused by ethephon and l-aminocyclopropane-l-carboxylic acid, Plant Physiol. Biochem., 29, pp. 327-331, (1991)