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细胞分裂素:玉米素的几何和位置异构体的合成与生物活性。

Cytokinins: synthesis and biological activity of geometric and position isomers of zeatin.

机构信息

Institute of Plant Development, Birge Hall, University of Wisconsin, Madison, Wisconsin 53706.

出版信息

Plant Physiol. 1972 Dec;50(6):702-5. doi: 10.1104/pp.50.6.702.

Abstract

Geometric and position isomers of zeatin and of ribosylzeatin and other compounds closely related to zeatin have been tested in the tobacco (Nicotiana tabacum var. Wisconsin No. 38) bioassay. None was more active than zeatin itself. There was a much greater difference in activity (> 50-fold) between trans- and cis-zeatin than between trans-isozeatin [6-(4-hydroxy-2-methyl-trans-2-butenylamino) purine] and cis-isozeatin [6-(4-hydroxy-2-methyl-cis-2-butenylamino) purine], the latter being less active than cis-zeatin and trans-isozeatin. Higher concentrations were required for equivalent callus growth stimulated by the 9-ribosyl derivatives, which followed an order of decreasing activity: ribosyl-trans-zeatin > ribosyl-cis-zeatin > ribosyl-trans-isozeatin > ribosyl-cis-isozeatin, corresponding roughly to that of the bases. The effect of side chain, double bond saturation was to diminish the activity, and in the dihydro series the shift of the methyl group from the 3- to the 2-position in going from dihydrozeatin to dihydroisozeatin [6-(4-hydroxy-2-methylbutylamino) purine] resulted in a 70-fold decrease in activity. cis-Norzeatin [6-(4-hydroxy-cis-2-butenylamino) purine], which was less than one-fifth as active as cis-zeatin, showed the effect of complete removal of the side chain methyl group, and cyclic-norzeatin [6-(3,6-dihydro-1,2-oxazin-2-yl) purine] was about 1/100 as active as cis-norzeatin. These findings delineate completely the effect on the cytokinin activity of zeatin of variation in side chain geometry, presence and position of the methyl substituent, presence and geometry of hydroxyl substitution, presence of the double bond, and of side chain cyclization.

摘要

玉米素和核糖基玉米素的几何和位置异构体以及其他与玉米素密切相关的化合物已在烟草(Nicotiana tabacum var. Wisconsin No. 38)生物测定中进行了测试。没有一种比玉米素本身更具活性。反式-和顺式-玉米素之间的活性差异(>50 倍)比反式-异玉米素[6-(4-羟基-2-甲基-反式-2-丁烯基氨基)嘌呤]和顺式-异玉米素[6-(4-羟基-2-甲基-顺式-2-丁烯基氨基)嘌呤]之间的差异更大,后者的活性低于顺式-玉米素和反式-异玉米素。9-核糖基衍生物刺激愈伤组织生长所需的浓度更高,活性依次降低:核糖基-反式-玉米素>核糖基-顺式-玉米素>核糖基-反式-异玉米素>核糖基-顺式-异玉米素,大致与碱基相对应。侧链双键饱和的影响是降低活性,在二氢系列中,甲基从 3 位到 2 位的位移,从二氢玉米素到二氢异玉米素[6-(4-羟基-2-甲基丁基氨基)嘌呤],活性降低了 70 倍。顺式-去甲玉米素[6-(4-羟基-顺式-2-丁烯基氨基)嘌呤]的活性不及顺式-玉米素的五分之一,表明侧链甲基完全去除的影响,环去甲玉米素[6-(3,6-二氢-1,2-恶嗪-2-基)嘌呤]的活性约为顺式-去甲玉米素的 1/100。这些发现完全描绘了玉米素侧链几何形状、甲基取代基的存在和位置、羟基取代基的存在和几何形状、双键的存在以及侧链环化对细胞分裂素活性的影响。

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