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薄荷(Mentha x piperita L.)精油的化学成分和生化活性变化:对菌根共生和重金属胁迫的响应

Variability in Chemical Composition and Biochemical Activities of Mentha x piperita L. Essential Oil, in Response to Mycorrhizal Symbiosis and Heavy Metal Stress.

作者信息

Djerrad Zineb, Terfi Souhila, Brakchi Lila

机构信息

Department of Ecology and Environment, Laboratory of Vegetal Ecology and Environment, Faculty of Biological Sciences, Houari Boumediene University of Sciences and Technology (USTHB), El Alia, BP 32, Bab Ezzouar, 16111, Algiers, Algeria.

Department of Chemistry, Laboratory of Electrochemistry-Corrosion, Metallurgy and Mineral Chemistry, Faculty of Chemistry, Houari Boumediene University of Sciences and Technology (USTHB), El Alia, BP 32, Bab Ezzouar, 16111, Algiers, Algeria.

出版信息

Chem Biodivers. 2024 Mar;21(3):e202301980. doi: 10.1002/cbdv.202301980. Epub 2024 Feb 20.

Abstract

The present paper highlights the effect of Pb/Cd-stress and/or mycorrhizal colonization by Glomus Intraradices on yield, chemical composition, cytotoxicity and antimicrobial activity of Mentha x piperita L. essential oil. Our findings showed that mycorrhizal colonization could be used to improve the essential oil yield of M. x piperita, either in non-stressed or Pb/Cd-stressed plants. GC-MS analysis revealed three chemotypes: linalool/pulegone (32.6/30.8 %) chemotype in essential oils of non-mycorrhizal Pb-stressed plants, menthone/menthyl acetate (30.3/25.1 %) chemotype in essential oils of non-mycorrhizal Cd-stressed plants and menthol (44.6 %) chemotype in essential oils of non-mycorrhizal non-stressed plants, mycorrhizal non-stressed plants and mycorrhizal Pb/Cd-stressed plants. The cytotoxicity of M. x piperita essential oil, evaluated by brine shrimp lethality bioassay, was increased in presence of Pb/Cd-stress (from 379.58 to 72.84 μm/mL) and decreased in mycorrhizal plants (from 379.58 to 482.32 μm/mL). The antimicrobial activity of M. x piperita essential oil, evaluated by disc diffusion method and determination of Minimum Inhibitory Concentration against ten microorganisms, was enhanced by the mycorrhizal colonization and deceased by the Pb/Cd-stress. In conclusion, the inoculation of medicinal plants with mycorrhizal fungi is a real avenue for alleviating abiotic stress and/or increasing the quantity and quality of secondary metabolites in terms of biological activities.

摘要

本文着重研究了铅/镉胁迫和/或根内球囊霉的菌根定殖对薄荷(Mentha x piperita L.)精油产量、化学成分、细胞毒性和抗菌活性的影响。我们的研究结果表明,菌根定殖可用于提高薄荷在非胁迫或铅/镉胁迫条件下的精油产量。气相色谱-质谱联用(GC-MS)分析揭示了三种化学类型:非菌根铅胁迫植物精油中的芳樟醇/胡薄荷酮(32.6/30.8%)化学型、非菌根镉胁迫植物精油中的薄荷酮/乙酸薄荷酯(30.3/25.1%)化学型以及非菌根非胁迫植物、菌根非胁迫植物和菌根铅/镉胁迫植物精油中的薄荷醇(44.6%)化学型。通过卤虫致死生物测定法评估,薄荷精油在铅/镉胁迫下细胞毒性增加(从379.58至72.84μm/mL),而在菌根植物中细胞毒性降低(从379.58至482.32μm/mL)。通过纸片扩散法和对十种微生物的最低抑菌浓度测定评估,薄荷精油的抗菌活性在菌根定殖时增强,在铅/镉胁迫时降低。总之,用菌根真菌接种药用植物是缓解非生物胁迫和/或提高次生代谢产物生物活性方面的数量和质量的有效途径。

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