二氢黄酮醇4还原酶在花青素合成中的功能及调控研究进展
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Function and Regulation Characterization of Dihydroflavonol 4Reductase in Anthocyanin Biosynthesis
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    摘要:

    植物色素主要有花青素、类胡萝卜素和生物碱类色素三大类,其中花青素是决定大部分被子植物组织或器官颜色的重要色素。花青素通过类黄酮途径合成,该途径是生物学上研究较多且较为清楚的代谢途径之一。近年来的研究表明,在该途径中除了查尔酮合成酶(chalcone synthase,CHS)、查尔酮异构酶(chalcone isomerase,CHI)和黄烷酮3羟化酶(flavanone3 hydrolase,F3H)起着关键作用外,二氢黄酮醇4还原酶(dihydroflavonol 4reductase,DFR)对花青素的合成也至关重要。DFR可催化3种二氢黄酮醇和2种黄烷酮生成5种不同的花青素前体,且DFR基因家族不同成员对各个底物的催化效率不同,因此它在一定程度上决定着植物中花青素的种类和含量,从而影响植物组织或器官的颜色。该文对近年来国内外有关DFR在花青素合成过程中的生物学功能与调控,包括DFR的特征、作用机制和系统进化以及环境、转录因子和一些结构基因与DFR的关系等方面的研究进展进行了综述,以期为DFR今后的研究和利用基因工程改变植物组织或器官的颜色提供理论依据。

    Abstract:

    Anthocyanins, carotenoids and alkaloids are three major classes of pigments in plant. Among them, anthocyanins impart vivid colors to most angiosperm tissues and organs. It is synthesized through flavonoid biosynthetic pathway, which has been well characterized and studied. Recently, researchers have found that, besides chalcone synthase (CHS), chalcone isomerase (CHI) and flavanone 3 hydrolase (F3H), which are very important enzymes participating in the flavonoid biosynthesis pathway, dihydroflavonol 4reductase (DFR) also plays a vital role in the anthocyanins biosynthesis. It can catalyze three different kinds of dihydroflavonols and two kinds of flavanones to produce five different anthocyanins precursors, and different members from the DFR gene family confer different catalytic efficiency. Thus, DFR determines the category and content of anthocyanins leading to different colors of plant tissues. In the present review, we summarized the function and regulation characterization of DFR in anthocyanin biosynthesis, those include the feature, evolution and the mechanism of DFR reaction. Moreover, we aslo discussed the relationship between DFR and environment, transcription factors and some structural genes, aiming at providing new insights for further research on DFR and basis for using genetic engineering to change the color of plant tissue and organ.

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李亚丽,李 欣,肖 婕,等.二氢黄酮醇4还原酶在花青素合成中的功能及调控研究进展[J].西北植物学报,2018,38(1):187-196

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  • 在线发布日期: 2018-02-05
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