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Elucidating the biosynthetic and regulatory mechanisms of flavonoid-derived bioactive components in Epimedium sagittatum

机译:阐明箭果淫羊med中黄酮类生物活性成分的生物合成和调控机制

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摘要

Herba epimedii (Epimedium), a traditional Chinese medicine, has been widely used as a kidney tonic and antirheumatic medicine for thousands of years. In Epimedium, flavonoids have been demonstrated to be the main bioactive components (BCs). However, the molecular biosynthetic and regulatory mechanisms of flavonoid-derived BCs remain obscure. In this study, we isolated 12 structural genes and two putative transcription factors (TFs) in the flavonoid pathway. Phytochemical analysis showed that the total content of four representative BCs (epimedin A, B, C, and icariin) decreased slightly or dramatically in two lines of Epimedium sagittatum during leaf development. Transcriptional analysis revealed that two R2R3-MYB TFs (EsMYBA1 and EsMYBF1), together with a bHLH TF (EsGL3) and WD40 protein (EsTTG1), were supposed to coordinately regulate the anthocyanin and flavonol-derived BCs biosynthesis in leaves. Overexpression of EsFLS (flavonol synthase) in tobacco resulted in increased flavonols content and decreased anthocyanins content in flowers. Moreover, EsMYB12 negatively correlated with the accumulation of the four BCs, and might act as a transcriptional repressor in the flavonoid pathway. Therefore, the anthocyanin pathway may coordinate with the flavonol-derived BCs pathway in Epimedium leaves. A better understanding of the flavonoid biosynthetic and regulatory mechanisms in E. sagittatum will facilitate functional characterization, metabolic engineering, and molecular breeding studies of Epimedium species.
机译:淫羊(Epimedium)是一种传统中药,几千年来一直广泛用作补肾和抗风湿药。在淫羊med中,类黄酮已被证明是主要的生物活性成分(BCs)。然而,类黄酮衍生的BCs的分子生物合成和调控机制仍然不清楚。在这项研究中,我们在类黄酮途径中分离了12个结构基因和两个推定的转录因子(TFs)。植物化学分析表明,在叶片发育过程中,在两条淫羊lines中,四种具有代表性的BC(epimedin A,B,C和icariin)的总含量略有或显着下降。转录分析显示,两个R2R3-MYB TF(EsMYBA1和EsMYBF1)以及bHLH TF(EsGL3)和WD40蛋白(EsTTG1)被认为可以协调花色苷和黄酮醇衍生的BCs在叶片中的生物合成。烟草中EsFLS(黄酮醇合酶)的过表达导致花中黄酮醇含量增加和花青素含量降低。此外,EsMYB12与四个BC的积累负相关,并可能在类黄酮途径中起转录抑制因子的作用。因此,花青素途径可能与淫羊leaves叶片中黄酮醇衍生的BCs途径协调。更好地了解人参中黄酮的生物合成和调控机制,将有助于淫羊med物种的功能表征,代谢工程和分子育种研究。

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