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Changes in the Levels of Calmodulin and of a Calmodulin Inhibitor in the Early Phases of Radish (Raphanus sativus L.) Seed Germination

机译:萝卜种子萌发初期钙调蛋白和钙调蛋白抑制剂水平的变化

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摘要

An inhibitor of Ca2+-calmodulin (Cam)-dependent brain phosphodiesterase was present in the soluble fraction of embryo axes from ungerminated radish (Raphanus sativus L.) seeds. This inhibitor is a Ca2+-dependent, Cam-binding protein; in fact: (a) its effect was strongly reduced by treatment with proteases; (b) the inhibition was counteracted by Cam but not by Ca2+; (c) on gel filtration in the presence of Ca2+, Cam co-chromatographed with the inhibitor. The inhibitor is heat stable and positively charged at pH 7.5. During early phases of germination, the fresh weight and the levels of DNA and RNA of embryo axes increased, the level of the inhibitor decreased, and the level of Cam increased. Abscisic acid (ABA) inhibited germination, the decrease of inhibitor, and the increase of Cam. Fusicoccin (FC) stimulated the increase in fresh weight but not the increase in the RNA and DNA levels; in this condition, the inhibitor level decreased and the increase in Cam level was higher than in the control. In the presence of both ABA and FC, there was an increase in fresh weight not accompanied by an increase in DNA and RNA levels; Cam increased and, on a fresh weight basis, reached the value of the control. These results indicate that the Ca2+-Cam system was activated in early germination of radish seeds by an increase in Cam and a decrease in the inhibitor levels, that FC, probably through the activation of membrane functions, increased Cam level, and that the ABA inhibition on germination was not mediated by the Ca2+-Cam system.
机译:未发芽的萝卜(Raphanus sativus L.)种子的胚轴可溶级分中存在Ca 2+-钙调蛋白(Cam)依赖性脑磷酸二酯酶抑制剂。该抑制剂是依赖Ca 2 + 的Cam结合蛋白。实际上:(a)用蛋白酶处理会大大降低其作用; (b)抑制作用是由Cam抵消的,而不是由Ca 2 + 抵消的; (c)在Ca 2 + 存在下进行凝胶过滤,Cam与抑制剂共同色谱分离。该抑制剂是热稳定的,并且在pH 7.5下带正电。在发芽的早期阶段,鲜重和胚轴的DNA和RNA含量增加,抑制剂含量降低,而Cam含量升高。脱落酸(ABA)抑制发芽,抑制剂的减少和Cam的增加。 Fusicoccin(FC)刺激了鲜重的增加,但没有刺激RNA和DNA含量的增加;在这种情况下,抑制剂水平降低,而凸轮水平的升高高于对照组。在ABA和FC同时存在的情况下,鲜重增加,而DNA和RNA水平却没有增加。凸轮增加,并以新鲜的重量计达到控制值。这些结果表明,Ca 2 + -Cam系统在萝卜种子的早期萌发过程中由于Cam的增加和抑制剂水平的降低而被激活,FC可能是通过膜功能的激活, Ca 2 + -Cam系统不介导ABA抑制发芽。

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