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25-羟基、26-羟基、25,26-二羟基和25,26-环氧油菜素内酯的生物活性。

Bioactivity of 25-hydroxy-, 26-hydroxy, 25,26-dihydroxy- and 25,26-epoxybrassinolide.

作者信息

Pharis R P, Janzen L, Nakajima S K, Zhu J, Back T G

机构信息

Department of Biological Sciences, University of Calgary, Calgary, AB, Canada T2N 1N4.

出版信息

Phytochemistry. 2001 Dec;58(7):1043-7. doi: 10.1016/s0031-9422(01)00381-8.

Abstract

The bioactivity of 25-hydroxybrassinolide, (25S)- and (25R)-26-hydroxybrassinolide, (25S)- and (25R)-25,26-dihydroxybrassinolide, and of (25R)-25,26-epoxybrassinolide was tested in the rice leaf lamina inclination assay. The 25- and (25S)-26-hydroxy derivatives are known metabolites of the naturally-occurring phytohormone brassinolide, whereas the other compounds are novel, but closely related, congeners. When tested alone, all showed either no activity or only weak activity at relatively high doses. When coapplied with indole-3-acetic acid (IAA), an auxin that synergizes the effects of brassinosteroids, enhanced bioactivity was observed for each compound. However, even when applied together with IAA, none of the compounds proved more bioactive than brassinolide with or without IAA. We conclude from these results that enzymatic hydroxylation of endogenous brassinolide at C-25 and/or C-26 does not enhance brassinosteroid activity, and so does not comprise an activation pathway in brassinolide biosynthesis. Instead, these hydroxylations result in modest to appreciable metabolic deactivation.

摘要

在水稻叶片倾斜度测定试验中,对25-羟基油菜素内酯、(25S)-和(25R)-26-羟基油菜素内酯、(25S)-和(25R)-25,26-二羟基油菜素内酯以及(25R)-25,26-环氧油菜素内酯的生物活性进行了测试。25-羟基和(25S)-26-羟基衍生物是天然存在的植物激素油菜素内酯的已知代谢产物,而其他化合物是新型的,但结构紧密相关的同系物。单独测试时,所有化合物在相对高剂量下均无活性或仅有微弱活性。当与吲哚-3-乙酸(IAA)共同施用时,IAA是一种能协同油菜素甾体作用的生长素,每种化合物均观察到生物活性增强。然而,即使与IAA一起施用,没有一种化合物在有或没有IAA的情况下被证明比油菜素内酯具有更高的生物活性。从这些结果我们得出结论,内源性油菜素内酯在C-25和/或C-26处的酶促羟基化不会增强油菜素甾体活性,因此不构成油菜素内酯生物合成中的激活途径。相反,这些羟基化导致适度至明显的代谢失活。

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