首页> 外文期刊>Journal of trace elements in medicine and biology: Organ of the Society for Minerals and Trace Elements (GMS) >Manganese-induced changes in glandular trichomes density and essential oils production of Mentha aquatica L. at different growth stages
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Manganese-induced changes in glandular trichomes density and essential oils production of Mentha aquatica L. at different growth stages

机译:锰诱导的腺体粒状密度和精油生产的变化术术术术治疗不同的生长阶段

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Production and accumulation of essential oils in plants are influenced by intrinsic and environmental factors. Here, we attempted to elucidate the effect of manganese (Mn) supply on the density of glandular trichomes and the production of essential oils inMentha aquatica(water mint; syn.Mentha hirsutaHuds.) at the different growth stages. To this aim, plants were treated with 100?μM of Mn (supplied as MnSO4·H2O) at early and late vegetative stages of growth. Then, the control and treated plants were harvested, and biochemical, morphological and molecular analyses indicated that Mn supply has affectedM. aquaticaat the different growth stages. The biomass, Mn accumulation, glandular trichomes density, essential oils yield and expression levels of the genes encoding enzymes involved in terpenoid biosynthesis pathway (1-Deoxy d-xylulose-5-phosphate synthase (Dxs), geranyl diphosphate synthase (Gpps), isopentenyl diphosphate isomerase (Ippi), β-caryophyllene synthase (Cps), limonene synthase (Ls) and menthofuran synthase (Mfs)) were increased by Mn supply at both growth stages. However, the increased rates of the assayed parameters were varied between the early and late vegetative stages. Moreover, the content and chemical composition of terpenoid components were affected by Mn supply and plant growth stage. There were positive and weak correlations among the study variables under the Mn supply at the different growth stages. Given these findings, we propose that the application of Mn supply at both early and late vegetative stages elevates the growth, density of glandular trichomes and production of essential oils inM. aquatica.
机译:植物精油的生产和积累受内部和环境因素的影响。在这里,我们试图阐明锰(Mn)供应对腺体毛细胞密度和精油生产的效果,并在不同的增长阶段在不同的增长阶段生产精油(水薄荷; syn.mentha hirsutahuds。)。为此目的,在早期和晚期生长的营养阶段,用100μmmN(作为MnSO4·H 2 O提供为MnSO4·H 2 O)治疗植物。然后,收获了对照和处理的植物,并且生物化学,形态学和分子分析表明MN供应具有受影响的影响。 Aquaticaat不同的增长阶段。生物质,Mn积聚,腺毛状体密度,精油产率和编码酶中酶的基因的表达水平(1-脱氧D-木糖糖-5-磷酸合酶(DXS),甲苯二磷酸合酶(GPP),异戊烯基通过在两种生长阶段的Mn供应增加了二磷酸异构酶(IPPI),β-亚氰基合酶(CPS),柠檬烯合酶(LS)和胶质呋喃合酶(MFS))。然而,在早期和晚期营养阶段之间变化了测定参数的提高。此外,萜类化成分的含量和化学成分受Mn供应和植物生长阶段的影响。在不同生长阶段的MN供应下的研究变量之间存在正且弱相关性。鉴于这些调查结果,我们提出在早期和晚期营养阶段的施用MN供应升高了腺体胎儿的生长,密度并产生精油INM。 aquatica。

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