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A non-targeted metabolomics approach to evaluate the effects of biomass growth and chitosan elicitation on primary and secondary metabolism of Hypericum perforatum in vitro roots

机译:一种非针对性代谢组种方法来评估生物质生长和壳聚糖诱导对体外根菌初级和次生代谢的影响

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摘要

Hypericum perforatum L. is a medicinal plant commonly used worldwide for the treatment of mild and moderate depression due to its wide range of bioactive compounds. H. perforatum regenerated roots have been proposed as an efficacious in vitro system to biosynthesize pharmaceutically useful secondary metabolites. In the present study, a metabolomic platform, which integrates an nuclear magnetic resonance (NMR)-based metabolic profiling and analysis of variance-simultaneous component analysis (ASCA), has been applied in order to characterize the changes of the primary and secondary metabolism of H. perforatum regenerated roots induced by an achieved high biomass density in a confined growth environment or in response to chitosan treatment.The ASCA modelling applied to NMR-based metabolic profiling allowed to recognize the effects due to biomass growth rate changes and chitosan treatment. With an high biomass density, associated to a decelerating biomass growth rate, the levels of tryptophan, fructose, shikimic acid, and epicatechin increased, whereas γ-aminobutyric acid and histidine decreased. In response to chitosan elicitation, the biomass growth was arrested and valine, isoleucine, glutamine, γ-aminobutyric acid, fructose, sucrose, polyunsaturated fatty acids, epicatechin, xanthones, dimethylallyl-pyrophosphate, and stigmasterol levels increased, while histidine levels decreased. The metabolic profiling of regenerated roots shows how the cultures respond to different stress conditions: production of epicatechin in response to high biomass density and production of epicatechin, xanthones and isoprenoids in response to chitosan-treatment. This approach can be applied to define suitable protocols to produce the desired secondary metabolites with different bioactivities.
机译:Hypericum perforaTum L.是一种用于治疗温和和中度抑郁症的药用植物,由于其广泛的生物活性化合物,适用于轻度和中度抑郁症。 H.已经提出了穿孔再生根作为生物合成药学上有用的二次代谢物的有效体外系统。在本研究中,已经施加了一种组成的代谢平台,其集成核磁共振(NMR)的代谢分析和分析方差 - 同时成分分析(ASCA),以表征初级和次生代谢的变化H.通过狭窄的生长环境中实现的高生物量密度或响应壳聚糖治疗诱导的穿孔再生根。ASCA建模适用于基于NMR的代谢分析,允许识别由于生物质生长速率变化和壳聚糖处理引起的效果。具有高生物量密度,与减速的生物质生长速率相关,色氨酸,果糖,植物酸和epicateChin的水平增加,而γ-氨基丁酸和组氨酸减少。响应壳聚糖诱导,生物质生长被捕,并缬氨酸,异亮氨酸,谷氨酰胺,γ-氨基丁酸,果糖,蔗糖,多不饱和脂肪酸,表演素,X原烷酮,二甲基丙烯酸 - 焦磷酸盐,而组氨酸水平降低。再生根的代谢分析表明,培养物如何应对不同的应激条件:响应于壳聚糖治疗的高生物量密度和表情素,X原酮和异戊二烯的高生物量密度和生产的ePicaTechin的生产。这种方法可以应用于定义合适的方案以产生具有不同生物活跃的所需的次级代谢物。

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