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Metabolic Profiling Provides Unique Insights to Accumulation and Biosynthesis of Key Secondary Metabolites in Annual Pasture Legumes of Mediterranean Origin

机译:代谢分析为中牧场牧草中的主要次生代谢产物积累和生物合成提供了独特的见解

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摘要

Annual legumes from the Mediterranean region are receiving attention in Australia as alternatives to traditional pasture species. The current study employed novel metabolic profiling approaches to quantify key secondary metabolites including phytoestrogens to better understand their biosynthetic regulation in a range of field-grown annual pasture legumes. In addition, total polyphenol and proanthocyanidins were quantified using Folin–Ciocalteu and vanillin assays, respectively. Metabolic profiling coupled with biochemical assay results demonstrated marked differences in the abundance of coumestans, flavonoids, polyphenols, and proanthocyanidins in annual pasture legume species. Genetically related pasture legumes segregated similarly from a chemotaxonomic perspective. A strong and positive association was observed between the concentration of phytoestrogens and upregulation of the flavonoid biosynthetic pathway in annual pasture legumes. Our findings suggest that evolutionary differences in metabolic dynamics and biosynthetic regulation of secondary metabolites have logically occurred over time in various species of annual pasture legumes resulting in enhanced plant defense.
机译:来自地中海地区的每年豆类正在澳大利亚接受关注传统牧场物种的替代品。目前的研究采用了新的代谢分析方法来量化包括植物雌激素的关键次生代谢产物,以更好地了解他们在一系列现场增长的年度牧场豆类中的生物合成调节。另外,使用Folin-Ciocalteu和香草蛋白测定分别定量了总多酚和原花青素。与生化测定相结合的代谢分析结果表明,在年牧场豆类物种中的富含香豆素,类黄酮,多酚和花青蛋白的丰富差异明显差异。基因相关的牧场豆类与趋化性的角度类似地隔离。在植物植物浓度与每年牧草豆类中黄酮类生物合成途径的上调之间观察到强烈阳性的关联。我们的研究结果表明,次要代谢物的代谢动力学和生物合成调节的进化差异随着时间的每年牧草豆类的时间而导致植物防御增强。

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