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首页> 外文期刊>Phytochemistry >The effect of drought stress on the expression of key genes involved in the biosynthesis of triterpenoid saponins in liquorice (Glycyrrhiza glabra)
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The effect of drought stress on the expression of key genes involved in the biosynthesis of triterpenoid saponins in liquorice (Glycyrrhiza glabra)

机译:干旱胁迫对甘草三萜皂苷生物合成中关键基因表达的影响

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摘要

Glycyrrhiza glabra is an important medicinal plant throughout the world. Glycyrrhizin is a triterpenoid that is among the most important secondary metabolites produced by liquorice. Drought stress is proposed to enhance the levels of secondary metabolites. In this study, the effect of drought stress on the expression of important genes involved in the glycyrrhizin biosynthetic pathway was examined. Drought stress at the seedling stage was applied to 8-day-old plants using polyethylene glycol. Subsequently, the samples were collected 0, 4, 8 or 24 h post-treatment. At the adult plant stage, 10-month-old plants were subjected to drought stress by discontinuing irrigation. Subsequently, samples were collected at 2, 16 and 28 days after drought imposition (S-2d, S-16d and S-28d, respectively). We performed semi-quantitative RT-PCR assays to evaluate the gene expression levels of sequalene synthase (SQS), beta-amyrin synthase (bAS), lupeol synthase (LUS) and cycloartenol synthase (CAS) during stress. Finally, the glycyrrhizin content of stolons was determined via HPLC. The results revealed that due to osmotic stress, the gene expression levels of SQS and bAS were increased, whereas those of CAS were relatively unchanged at the seedling stage. At the adult plant stage, the expression levels of SQS and bAS were increased under drought stress conditions, whereas the gene expression level of CAS remained relatively constant. The glycyrrhizin content in stolons was increased only under severe drought stress conditions (Sad). Our results indicate that application of controlled drought stress up-regulates the expression of key genes involved in the biosynthesis of triterpenoid saponins and directly enhances the production of secondary metabolites, including glycyrrhizin, in liquorice plants
机译:甘草是全世界重要的药用植物。甘草甜素是一种三萜类化合物,是甘草产生的最重要的次生代谢产物之一。建议干旱胁迫以提高次生代谢产物的水平。在这项研究中,研究了干旱胁迫对甘草甜素生物合成途径中重要基因表达的影响。使用聚乙二醇将幼苗期的干旱胁迫应用于8天大的植物。随后,在处理后0、4、8或24小时收集样品。在成年植物阶段,通过停止灌溉使10个月大的植物遭受干旱胁迫。随后,在施加干旱后的第2、16和28天(分别为S-2d,S-16d和S-28d)收集样品。我们进行了半定量RT-PCR分析,以评估应激过程中角鲨烯合酶(SQS),β-淀粉状蛋白合成酶(bAS),羽扇豆醇合酶(LUS)和环戊烯醇合酶(CAS)的基因表达水平。最后,通过HPLC测定茎的甘草甜素含量。结果表明,由于渗透胁迫,幼苗期SQS和bAS的基因表达水平增加,而CAS的基因表达水平相对不变。在成年植物阶段,干旱胁迫条件下SQS和bAS的表达水平升高,而CAS的基因表达水平保持相对恒定。 under茎中的甘草甜素含量仅在严重干旱胁迫条件下才增加(悲伤)。我们的结果表明,控制干旱胁迫的应用上调了三萜皂苷生物合成中涉及的关键基因的表达,并直接增强了甘草植物中次生代谢产物(包括甘草甜素)的产生。

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