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对水母雪莲二氢黄酮醇 4-还原酶(DFR)基因的分子特征和表达分析。

Molecular characterization and expression analysis of dihydroflavonol 4-reductase (DFR) gene in Saussurea medusa.

机构信息

Key Laboratory of Photosynthesis and Environmental Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.

出版信息

Mol Biol Rep. 2012 Mar;39(3):2991-9. doi: 10.1007/s11033-011-1061-2. Epub 2011 Jun 24.

Abstract

Dihydroflavonol 4-reductase (DFR), which catalyzes the reduction of dihydroflavonols to leucoanthocyanins, is a key enzyme in the biosynthesis of anthocyanidins, proanthocyanidins, and other flavonoids of importance in plant development and human nutrition. This study isolated a full length cDNA encoding DFR, designated as SmDFR (GenBank Accession No. EF600682), by screening a cDNA library from a red callus line of Saussurea medusa, which is an endangered, traditional Chinese medicinal plant with high pharmacological value. SmDFR was functionally expressed in yeast (Saccharomyces cerevisiae) to confirm that SmDFR can readily reduce dihydroquercetin (DHQ) and dihydrokampferol (DHK), but it could not reduce dihydromyricetin (DHM). The deduced SmDFR structure shared extensive sequence similarity with previously characterized plant DFRs and phylogenetic analysis showed that it belonged to the plant DFR super-family. SmDFR also possessed flavanone 4-reductase (FNR) activity and can catalyze the conversion of eridictyol to luteoforol. Real-time PCR analysis showed that the expression level of SmDFR was higher in flowers compared with both leaves and roots. This work greatly enhances our knowledge of flavonoid biosynthesis in S. medusa and marks a major advance that could facilitate future genetic modification of S. medusa.

摘要

二氢黄酮醇 4-还原酶(DFR)是花色苷、原花青素和其他在植物发育和人类营养中具有重要意义的类黄酮生物合成中的关键酶,它催化二氢黄酮醇还原为无色花色素。本研究通过筛选来自珍稀药用植物水母雪莲红色愈伤组织的 cDNA 文库,分离得到一个全长编码 DFR 的 cDNA,命名为 SmDFR(GenBank 登录号 EF600682)。SmDFR 在酵母(酿酒酵母)中得到功能表达,以确认 SmDFR 能够轻易地还原二氢槲皮素(DHQ)和二氢山奈酚(DHK),但不能还原二氢杨梅素(DHM)。推断的 SmDFR 结构与先前表征的植物 DFR 具有广泛的序列相似性,系统发育分析表明它属于植物 DFR 超家族。SmDFR 还具有黄烷酮 4-还原酶(FNR)活性,能够催化圣草酚转化为芫花素。实时 PCR 分析表明,SmDFR 的表达水平在花朵中高于叶片和根部。这项工作极大地增强了我们对水母雪莲中类黄酮生物合成的认识,标志着一个重大进展,可能有助于未来对水母雪莲的遗传修饰。

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