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首页> 外文期刊>Frontiers in Plant Science >A R2R3-MYB Transcription Factor Regulates the Flavonol Biosynthetic Pathway in a Traditional Chinese Medicinal Plant, Epimedium sagittatum
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A R2R3-MYB Transcription Factor Regulates the Flavonol Biosynthetic Pathway in a Traditional Chinese Medicinal Plant, Epimedium sagittatum

机译:R2R3-MYB转录因子调节中药植物矢状淫羊

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Flavonols as plant secondary metabolites with vital roles in plant development and defense against UV light, have been demonstrated to be the main bioactive components (BCs) in the genus Epimedium plants, several species of which are used as materials for Herba Epimedii , an important traditional Chinese medicine. The flavonol biosynthetic pathway genes had been already isolated from Epimedium sagittatum , but a R2R3-MYB transcription factor regulating the flavonol synthesis has not been functionally characterized so far in Epimedium plants. In this study, we isolated and characterized the R2R3-MYB transcription factor EsMYBF1 involved in regulation of the flavonol biosynthetic pathway from E. sagittatum . Sequence analysis indicated that EsMYBF1 belongs to the subgroup 7 of R2R3-MYB family which contains the flavonol-specific MYB regulators identified to date. Transient reporter assay showed that EsMYBF1 strongly activated the promoters of EsF3H (flavanone 3-hydroxylase) and EsFLS (flavonol synthase), but not the promoters of EsDFRs (dihydroflavonol 4-reductase) and EsANS (anthocyanidin synthase) in transiently transformed Nicotiana benthamiana leaves. Both yeast two-hybrid assay and transient reporter assay validated EsMYBF1 to be independent of EsTT8 , or AtTT8 bHLH regulators of the flavonoid pathway as cofactors. Ectopic expression of EsMYBF1 in transgenic tobacco resulted in the increased flavonol content and the decreased anthocyanin content in flowers. Correspondingly, the structural genes involved in flavonol synthesis were upregulated in the EsMYBF1 overexpression lines, including NtCHS (chalcone synthase), NtCHI (chalcone isomerase), NtF3H and NtFLS , whereas the late biosynthetic genes of the anthocyanin pathway ( NtDFR and NtANS ) were remarkably downregulated, compared to the controls. These results suggest that EsMYBF1 is a flavonol-specific R2R3-MYB regulator, and involved in regulation of the biosynthesis of the flavonol-derived BCs in E. sagittatum . Thus, identification and functional characterization of EsMYBF1 provide insight into understanding the biosynthesis and regulation of the flavonol-derived BCs in Epimedium plants, and also provide an effective tool gene for genetic manipulation to improve the flavonol synthesis.
机译:黄酮醇是植物次生代谢产物,在植物的发育和抵御紫外线方面具有至关重要的作用,已被证明是淫羊Epi属植物的主要生物活性成分(BCs),其中几种被用作淫羊Herb的原料,而淫羊an是重要的传统中药。黄酮生物合成途径基因已经从淫羊Epi淫羊isolated中分离出来,但是到目前为止,淫羊med植物中尚未有调节黄酮醇合成的R2R3-MYB转录因子。在这项研究中,我们分离并鉴定了R2R3-MYB转录因子EsMYBF1,其参与了箭叶黄酮生物合成途径的调控。序列分析表明,EsMYBF1属于R2R3-MYB家族的第7亚组,其包含迄今鉴定出的黄酮醇特异性MYB调节剂。瞬时报告基因分析表明,EsMYBF1在瞬时转化的烟草本生叶中强烈激活了EsF3H(黄酮3-羟化酶)和EsFLS(黄酮醇合酶)的启动子,但没有激活EsDFRs(二氢黄酮醇4-还原酶)和EsANS(花色素苷合酶)的启动子。酵母双杂交测定法和瞬时报告基因测定法均证实EsMYBF1独立于类黄酮途径的EsTT8或AtTT8 bHLH调节剂,并作为辅因子。 EsMYBF1在转基因烟草中的异位表达导致花中黄酮醇含量增加和花青素含量下降。相应地,参与黄酮醇合成的结构基因在EsMYBF1过表达株系中被上调,包括NtCHS(查尔酮合酶),NtCHI(查尔酮异构酶),NtF3H和NtFLS,而花色苷途径的晚期生物合成基因(NtDFR和NtANS则是)与对照相比下调。这些结果表明,EsMYBF1是一种黄酮醇特异性的R2R3-MYB调节剂,参与了箭叶黄酮来源的BCs的生物合成调控。因此,EsMYBF1的鉴定和功能表征为深入了解淫羊med植物中黄酮醇衍生的BCs的生物合成和调控提供了见识,也为遗传操作提供了有效的工具基因,以改善黄酮醇的合成。

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