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Suppression of Phyllospheric Microbiota Alters Content of Pharmacologically Relevant Compounds of S. nigra Flowers

机译:抑制Phyllompheric Microbiota的含量的S. nigra Flowers的药理学相关化合物的含量

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Accumulating scientific evidence suggests that medicinal plant-associated microbiota plays significant role in biosynthesis of pharmacologically relevant compounds. Suppression of S. nigra microbiota by an antibiotic treatment leads to decreased emission of volatile terpenoids from S. nigra flowers and altered metabolome of host plant. However, it is not known if suppression of microbiota affects an abundance of health promoting compounds and pharmacologically relevant properties of S, nigra. The present study reveals that suppression of phyllospheric microbiota by an antibiotic treatment affects total phenolic content (TPC), anti-radical activity (ARA) and total flavonol content (Flav) of wild S. nigra flowers. Significance analysis of metabolites (SAM) performed using ultra high performance liquid chromatography-time of flight-masspectrometry (UHPLC-TOF-MS) based metabolomics data identifies pharmacologically relevant flavonols as metabolites discriminating between antibiotic treated and control flowers of S. nigra. Reported results substantiate need for research investigating an effect of microbiota suppression on biological activity of the S. nigra flowers.
机译:积累科学证据表明,药用植物相关的微生物群在药理学相关化合物的生物合成中起着重要作用。通过抗生素治疗抑制S. nigra Microbiota的抑制导致来自S. nigra鲜花的挥发性萜类化合物的排放和宿主植物的代谢物改变。然而,如果微生物瘤的抑制影响了促进的健康化合物和S,NIGRA的药理学相关性质,则不知道。本研究表明,通过抗生素治疗的抑制局部脊椎纤维群,影响野生S. nigra花的总酚类含量(TPC),抗自由基活性(ARA)和总黄酮溶液含量(FlaV)。使用超高效谱位(UHPLC-TOF-MS)的代谢物数据进行代谢物(SAM)的代谢物(SAM)的意义分析鉴定了药理学相关的黄酮,作为鉴别抗生素处理和S. nigra的抗生素处理和对照花的代谢物。据报道的结果证实需要研究微生物群抑制对S. nigra花的生物活性的影响。

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