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高浓度臭氧对柠檬草[(施图德)(瓦茨)]生长发育及代谢产物含量的影响

Role of Elevated Ozone on Development and Metabolite Contents of Lemongrass [ (Steud.) (Wats.)].

作者信息

Madheshiya Parvati, Gupta Gereraj Sen, Sahoo Ansuman, Tiwari Supriya

机构信息

Laboratory of Ecotoxicology, Centre of Advanced Studies, Department of Botany, Institute of Science, Banaras Hindu University, Varanasi 221005, India.

出版信息

Metabolites. 2023 Apr 27;13(5):597. doi: 10.3390/metabo13050597.

Abstract

The present study was conducted to assess the effect of elevated ozone stress on the development and metabolite contents of lemongrass, a medicinal plant. The experimental plant was exposed to two elevated ozone concentrations (ambient + 15 ppb, and ambient + 30 ppb) using open-top chambers. Samplings were carried out at 45 and 90 days after transplantation (DAT), for the analysis of different characteristics, while the metabolite contents of leaves and essential oils were analyzed at 110 DAT. Both the doses of elevated ozone had notable negative effects on the carbon fixation efficiency of plants, resulting in a significant reduction in plant biomass. Enzymatic antioxidant activity increased during the second sampling, which suggests that the scavenging of reactive oxygen species was more prominent in lemongrass during the later developmental stage. The results of the present study showed a stimulated diversion of resources towards the phenylpropanoid pathway, which is made evident by the increase in the number and contents of metabolites in foliar extract and essential oils of plants grown at elevated ozone doses, as compared to ambient ozone. Elevated ozone not only upregulated the contents of medicinally important components of lemongrass, it also induced the formation of some pharmaceutically active bio compounds. On the basis of this study, it is expected that increasing ozone concentrations in near future will enhance the medicinal value of lemongrass. However, more experiments are required to validate these findings.

摘要

本研究旨在评估升高的臭氧胁迫对药用植物柠檬草的生长发育和代谢产物含量的影响。使用开顶式气室将实验植物暴露于两种升高的臭氧浓度(环境浓度 + 15 ppb和环境浓度 + 30 ppb)下。在移植后45天和90天进行采样,以分析不同特征,而在移植后110天分析叶片和精油的代谢产物含量。两种升高的臭氧剂量均对植物的碳固定效率产生显著负面影响,导致植物生物量显著降低。在第二次采样期间,酶促抗氧化活性增加,这表明在柠檬草发育后期,活性氧的清除更为显著。本研究结果表明,资源向苯丙烷途径的转移受到刺激,这一点从与环境臭氧相比,在升高的臭氧剂量下生长的植物的叶提取物和精油中代谢产物的数量和含量增加中可以明显看出。升高的臭氧不仅上调了柠檬草药用重要成分的含量,还诱导了一些具有药用活性的生物化合物的形成。基于这项研究,预计在不久的将来,臭氧浓度的增加将提高柠檬草的药用价值。然而,需要更多的实验来验证这些发现。

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