The Effect of Endophytic Fungus CA3-A with Biotransformation or Catalysis Activity on the Metabolite Formation of Traditional Chinese Medicinal Astragalus Membranaceus var. Mongholicus (Bunge) P. K. Hsiao.

IF 3.1 2区 农林科学 Q2 CHEMISTRY, APPLIED
Ding-Hui Feng, Jin-Long Cui
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引用次数: 0

Abstract

The effect of endophytic fungal biotransformation on the formation of metabolic substances has become a non-negligible factor in assessing the quality of medicinal plants. However, the relevant evidences are still particularly lacking. In this study, an endophytic fungus CA3-A with biotransformation activity was screened and identified as Talaromyces coprophilus from root of Astragalus mongholicus. Its biotransformation effect on host metabolism was studied by co-culture with fungus and host root. The results showed that in addition to the significant changes in primary metabolites, secondary metabolite conversions are mainly focused on compounds such as terpenoids, phenols and flavonoids. The transformed metabolic pathways are mainly enriched in glycerophospholipid metabolism, ubiquinone and terpenoid quinones biosynthesis, and tyrosine metabolism. A total of 38 signature differential metabolites are found through multivariate statistical analysis. In addition to eleven primary metabolites including glycerides and glycerophospholipids, twenty-eight secondary metabolites distribute in terpenes, sterols, phenols, flavonoids, benzene, lipids and other classes of compounds, respectively. In conclusion, this study aims to quickly focus on the signature differentially metabolites from a large amount of information, narrow the possible range of potential transformation products, and provide help for understanding of influence of endophytes on host metabolism and the search for new natural products.

具有生物转化或催化活性的内生真菌CA3-A对中药黄芪代谢物形成的影响
内生真菌生物转化对代谢物质形成的影响已成为评价药用植物品质的一个不可忽视的因素。然而,相关证据仍然特别缺乏。本研究从蒙古黄芪根中筛选出一株具有生物转化活性的内生真菌CA3-A,鉴定为Talaromyces coprophilus。通过与真菌和寄主根共培养,研究了其对寄主代谢的生物转化作用。结果表明,除初级代谢物发生显著变化外,次生代谢物的转化主要集中在萜类、酚类和类黄酮等化合物上。转化的代谢途径主要富集于甘油磷脂代谢、泛醌和萜类醌生物合成和酪氨酸代谢。通过多元统计分析,共发现38个特征差异代谢物。除甘油酯和甘油磷脂等11种初级代谢物外,28种次级代谢物分别分布在萜烯、甾醇、酚类、黄酮类、苯、脂类等类化合物中。综上所述,本研究旨在从大量的信息中快速关注到特征差异代谢物,缩小潜在转化产物的可能范围,为了解内生菌对宿主代谢的影响和寻找新的天然产物提供帮助。
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来源期刊
Plant Foods for Human Nutrition
Plant Foods for Human Nutrition 工程技术-食品科技
CiteScore
6.80
自引率
7.50%
发文量
89
审稿时长
12-24 weeks
期刊介绍: Plant Foods for Human Nutrition (previously Qualitas Plantarum) is an international journal that publishes reports of original research and critical reviews concerned with the improvement and evaluation of the nutritional quality of plant foods for humans, as they are influenced by: - Biotechnology (all fields, including molecular biology and genetic engineering) - Food science and technology - Functional, nutraceutical or pharma foods - Other nutrients and non-nutrients inherent in plant foods
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