毛杨叶芽中二氢查尔酮特异性o -甲基转移酶与芽树脂形成有关。

IF 5.6 2区 生物学 Q1 PLANT SCIENCES
Eerik-Mikael Piirtola, Dawei Ma, Jürgen Ehlting, C Peter Constabel
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引用次数: 0

摘要

分泌叶芽树脂是温带树木保护休眠叶芽免受霜冻损害、脱水和昆虫食草的一种机制。芽树脂含有多种特殊代谢物,包括萜类、苯类和酚类。毛杨和香茅叶芽树脂中含有高浓度的o -甲基化二氢查尔酮,但甲基化这些化合物的酶仍然是一个谜。我们使用转录组学和差异基因表达分析鉴定了一个编码P. trichocarpa dhc特异性o -甲基转移酶的基因,我们将其命名为PtDOMT1。详细的酶分析表明PtDOMT1是一种高度选择性和区域特异性的o -甲基转移酶,它以s -腺苷- l-蛋氨酸作为甲基供体甲基化二氢查尔酮的4-和4'位。PtDOMT1不甲基化任何其他类黄酮或酚类底物。这些发现奠定了杨树o -甲基化二氢查尔酮生物合成的最后一步,代表了植物叶芽树脂生物合成的第一个分子分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A dihydrochalcone-specific O-methyltransferase from leaf buds of Populus trichocarpa implicated in bud resin formation.

Production of secreted leaf bud resin is a mechanism for temperate trees to protect dormant leaf buds against frost damage, dehydration, and insect herbivory. Bud resins contain a wide variety of special metabolites including terpenoids, benzenoids, and phenolics. The leaf bud resins of Populus trichocarpa and P. balsamifera contain high concentrations of O-methylated dihydrochalcones, but the enzymes for methylating these compounds remain enigmatic. We used transcriptomics and differential gene expression analyses to identify a gene encoding a P. trichocarpa DHC-specific O-methyltransferase, which we named PtDOMT1. Detailed enzymatic analyses demonstrated PtDOMT1 to be a highly selective and regiospecific O-methyltransferase which methylates 4- and 4'-positions of dihydrochalcones using S-adenosyl-L-methionine as a methyl donor. PtDOMT1 did not methylate any other flavonoid or phenolic substrate tested. These findings establish the final step in the biosynthesis of O-methylated dihydrochalcones in poplar and represent the first molecular analysis of leaf bud resin biosynthesis in plants.

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来源期刊
Journal of Experimental Botany
Journal of Experimental Botany 生物-植物科学
CiteScore
12.30
自引率
4.30%
发文量
450
审稿时长
1.9 months
期刊介绍: The Journal of Experimental Botany publishes high-quality primary research and review papers in the plant sciences. These papers cover a range of disciplines from molecular and cellular physiology and biochemistry through whole plant physiology to community physiology. Full-length primary papers should contribute to our understanding of how plants develop and function, and should provide new insights into biological processes. The journal will not publish purely descriptive papers or papers that report a well-known process in a species in which the process has not been identified previously. Articles should be concise and generally limited to 10 printed pages.
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