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参与柳醇生物合成的杨柳 UDP-糖基转移酶。

A willow UDP-glycosyltransferase involved in salicinoid biosynthesis.

机构信息

Computational and Analytical Sciences Department, Rothamsted Research, West Common, Harpenden, Hertfordshire, UK.

出版信息

J Exp Bot. 2021 Feb 27;72(5):1634-1648. doi: 10.1093/jxb/eraa562.

Abstract

The salicinoids are phenolic glycosides that are characteristic secondary metabolites of the Salicaceae, particularly willows and poplars. Despite the well-known pharmacology of salicin, that led to the development of aspirin >100 years ago, the biosynthetic pathways leading to salicinoids have yet to be defined. Here, we describe the identification, cloning, and biochemical characterization of SpUGT71L2 and SpUGT71L3-isozymic glycosyltransferases from Salix purpurea-that function in the glucosylation of ortho-substituted phenols. The best substrate in vitro was salicyl-7-benzoate. Its product, salicyl-7-benzoate glucoside, was shown to be endogenous in poplar and willow. Together they are inferred to be early intermediates in the biosynthesis of salicortin and related metabolites in planta. The role of this UDP-glycosyltransferase was confirmed via the metabolomic analysis of transgenic plants produced by RNAi knockdown of the poplar orthologue (UGT71L1) in the hybrid clone Populus tremula×P. alba, INRA 717-1B4.

摘要

柳醇类是酚糖苷,是杨柳科植物,尤其是柳树和杨树的特征次生代谢产物。尽管柳醇具有众所周知的药理学作用,导致 100 多年前开发出了阿司匹林,但导致柳醇类形成的生物合成途径尚未确定。在这里,我们描述了从 Salix purpurea 中鉴定、克隆和生化表征 SpUGT71L2 和 SpUGT71L3-同工型糖基转移酶的情况,这些酶在邻位取代酚的葡糖基化中起作用。体外最佳底物是水杨酰-7-苯甲酸酯。其产物水杨酰-7-苯甲酸葡萄糖苷被证明是杨树和柳树中的内源性物质。它们共同被推断为植物体内柳醇苷和相关代谢物生物合成的早期中间体。通过对杂种克隆 Populus tremula×P. alba、INRA 717-1B4 中杨树同源物(UGT71L1)的 RNAi 敲低产生的转基因植物的代谢组学分析,证实了该 UDP-糖基转移酶的作用。

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