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赤霉素、玉米素和脱落酸对酸模叶片组织衰老的动力学分析。

A kinetic analysis of the effects of gibberellic Acid, zeatin, and abscisic Acid on leaf tissue senescence in rumex.

机构信息

The Biological Laboratories, Harvard University, Cambridge, Massachusetts 02138.

出版信息

Plant Physiol. 1975 Feb;55(2):192-8. doi: 10.1104/pp.55.2.192.

Abstract

Hormones which inhibit senescence in Rumex leaf tissue in the dark include gibberellic acid and the cytokinin zeatin. Abscisic acid accelerates senescence in this tissue. Other workers have proposed that cytokinins, but not gibberellins, interact with abscisic acid in senescing Rumex leaf tissue. The present study reinvestigates the question of interaction using measurements of chlorophyll degradation kinetics as parameters of senescence rate and draws the conclusion that neither zeatin nor gibberellic acid interact with abscisic acid in this system. In support of this conclusion are these results. Zeatin clearly cannot overcome the effects of abscisic acid when hormone solutions are replaced every other day. The kinetics of chlorophyll breakdown for tissue treated with unreplaced saturating zeatin solutions is different from that of tissue exposed to saturating zeatin plus abscisic acid. The observed rates of chlorophyll breakdown for tissue treated with abscisic acid and zeatin agree closely with predicted rates using a multiplicative model for independent action of the two hormones.Zeatin solutions, when replaced every other day, show up to a 550-fold increase in effective concentration in the retardation of senescence. Less than a 10-fold increase could be accounted for by the addition of more zeatin molecules to the tissue. A nonbiological inactivation of zeatin or the production of an inhibitor of zeatin action by the tissue could not be demonstrated. It seems that zeatin is metabolically inactivated or sequestered in this tissue. The possible physiological significance of the inactivation of cytokinins in leaf tissue is discussed.

摘要

黑暗中抑制根叶卷须组织衰老的激素包括赤霉素和细胞分裂素玉米素。脱落酸会加速该组织的衰老。其他研究人员提出,细胞分裂素而非赤霉素与衰老的根叶卷须组织中的脱落酸相互作用。本研究使用叶绿素降解动力学测量作为衰老率的参数重新研究了相互作用的问题,并得出结论,在该系统中,玉米素和赤霉素均不能与脱落酸相互作用。支持这一结论的是以下结果。当每隔一天更换激素溶液时,玉米素显然不能克服脱落酸的影响。用未替换的饱和玉米素溶液处理的组织的叶绿素分解动力学与暴露于饱和玉米素加脱落酸的组织的叶绿素分解动力学不同。用脱落酸和玉米素处理的组织的观察到的叶绿素分解速率与使用两种激素独立作用的乘法模型预测的速率非常吻合。每隔一天更换的玉米素溶液可将延缓衰老的有效浓度提高 550 倍。向组织中添加更多的玉米素分子只能解释增加不到 10 倍的浓度。不能证明玉米素的非生物失活或组织产生玉米素作用的抑制剂。似乎玉米素在该组织中被代谢失活或隔离。讨论了叶片组织中细胞分裂素失活的可能生理意义。

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