The content of macro- and microelements in plants of the genus Artemisia under conditions of introduction in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine

O. A. Коrablova, D. Rakhmetov, M. Shanaida, O. Vergun, Т. S. Bagatska, L. Svydenko, I. Ivashchenko
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引用次数: 1

Abstract

Purpose. To determine mineral composition of plants of species of the genus Artemisia (A. dracunculus L., A. abrotanum L. and A. argyi H.Lév. & Vaniot) to determine the possibility of their safe use in the food and pharmaceutical industries of Ukraine. Methods. X‑ray fluorescence method for determining the elemental composition of plant raw materials. Results. The content of mineral elements in plants of the genus Artemisia was determined depending on their ability to absorb elements from the soil and accumulate in the roots and organs of the aerial part was determined. The quantitative content of 21 macro- and microelements was established, and some peculiarities of their migration and distribution in the soil – roots – plant system were revealed. In particular, the aerial part of the studied plants contains K, Fe, Cu, Zn and Mn, which are the most important elements in the life of the plant organism. The content of mesoelements Ca and S is quite high. The amount of toxic elements Pb, Sr and Zr in plants is insignificant. Elements K and S accumulate in the aerial part. The content of elements in the aerial part of plants by decreasing their concentration can be represented in the form of the following series: for Artemisia dracunculus – S> K> Ca> Cl> Fe> Sr> Zn> Mn> Cu> Zr> Rb> Br> Cr; for A. abrotanum – K> Ca> S> Cl> Fe> Zn> Sr> Mn> Cu> Br> Cr> Co> Zr> Rb> Ni; for A. argyi – K> Ca> S> Fe> Cl> Sr> Zn> Mn> Co> Zr> Cu> Rb> Br> Se. The content of toxic elements in the studied plants was lower than the maximum allowable concentrations for plant raw materials and food. Conclusions. For the first time under conditions of introduction in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine in the plants Artemisia dracunculus, A. abrotanum and A. argyi the content of macro- and microelements, which are directly related to the metabolism of biologically active compounds, was determined. The peculiarities of their distribution by plant organs during the transition from soil to aboveground mass have been clarified. The obtained results can be used to evaluate and compare the quality of plant raw materials of the genus Artemisia, to determine the pharmacological properties of these plants associated with some elements of the mineral composition, and their use in the medical and food industries. The obtained data have both scientific and practical significance in the selection of economically valuable plant species for the enrichment of the cultivated flora of Ukraine.
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乌克兰国家科学院M. M. Gryshko国家植物园引种蒿属植物中宏量元素和微量元素含量
意图测定马先蒿属植物的矿物成分,以确定其在乌克兰食品和制药行业安全使用的可能性。方法。X射线荧光法测定植物原料的元素组成。后果根据蒿属植物从土壤中吸收元素并在地上部分的根和器官中积累的能力,测定了蒿属植物中矿物元素的含量。建立了21种常量和微量元素的定量含量,揭示了它们在土壤-根系-植物系统中迁移和分布的一些特点。特别是,所研究植物的地上部分含有K、Fe、Cu、Zn和Mn,它们是植物生命中最重要的元素。介晶元素Ca和S的含量相当高。有毒元素Pb、Sr和Zr在植物中的含量不显著。元素K和S积聚在天线部分中。植物地上部分的元素含量通过降低其浓度可表现为以下系列:龙蒿–S>K>Ca>Cl>Fe>Sr>Zn>Mn>Cu>Zr>Rb>Br>Cr;A.abrotanum–K>Ca>S>Cl>Fe>Zn>Sr>Mn>Cu>Br>Cr>Co>Zr>Rb>Ni;对于银合欢——K>Ca>S>Fe>Cl>Sr>Zn>Mn>Co>Zr>Cu>Rb>Br>Se。研究植物中的有毒元素含量低于植物原料和食品的最高允许浓度。结论。首次在乌克兰国家科学院格里什科国家植物园引种条件下,测定了与生物活性化合物代谢直接相关的大、微量元素含量。阐明了在从土壤向地上物质过渡过程中,它们在植物器官中的分布特点。所获得的结果可用于评估和比较蒿属植物原料的质量,确定这些植物与矿物成分中某些元素相关的药理特性,以及它们在医疗和食品工业中的用途。所获得的数据对选择有经济价值的植物物种以丰富乌克兰栽培植物群具有科学和实际意义。
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