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Genomic and Coexpression Analyses Predict Multiple Genes Involved in Triterpene Saponin Biosynthesis in Medicago truncatula

机译:基因组和共表达分析预测截短苜蓿中三萜皂苷生物合成的多个基因

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摘要

Saponins, an important group of bioactive plant natural products, are glycosides of triterpenoid or steroidal aglycones (sapogenins). Saponins possess many biological activities, including conferring potential health benefits for humans. However, most of the steps specific for the biosynthesis of triterpene saponins remain uncharacterized at the molecular level. Here, we use comprehensive gene expression clustering analysis to identify candidate genes involved in the elaboration, hydroxylation, and glycosylation of the triterpene skeleton in the model legume Medicago truncatula. Four candidate uridine diphosphate glycosyltransferases were expressed in Escherichia coli, one of which (UGT73F3) showed specificity for multiple sapogenins and was confirmed to glucosylate hederagenin at the C28 position. Genetic loss-of-function studies in M. truncatula confirmed the in vivo function of UGT73F3 in saponin biosynthesis. This report provides a basis for future studies to define genetically the roles of multiple cytochromes P450 and glycosyltransferases in triterpene saponin biosynthesis in Medicago.
机译:皂苷是一种重要的具有生物活性的植物天然产物,是三萜或类固醇糖苷(皂甙元)的糖苷。皂苷具有许多生物活性,包括赋予人类潜在的健康益处。但是,三萜皂苷生物合成的大多数特定步骤在分子水平上仍未表征。在这里,我们使用全面的基因表达聚类分析来识别候选基因在豆科植物紫花苜蓿模型中三萜骨架的精制,羟基化和糖基化。在大肠杆菌中表达了四种候选尿苷二磷酸糖基转移酶,其中一种(UGT73F3)显示出对多种皂苷元的特异性,并被证实可以在C28位置对糖原皂苷进行糖基化。截叶分枝杆菌的遗传功能丧失研究证实了UGT73F3在皂苷生物合成中的体内功能。该报告为未来研究确定遗传上的多种细胞色素P450和糖基转移酶在三萜皂苷生物合成中的作用提供了基础。

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