羊草和荨麻中常量元素和微量元素的短期变异。

Irina Shtangeeva, Matti Niemelä, Alexander Ryumin, Vladimir Chelibanov, Alexander Golovin, Ilkka Vesavaara, Paavo Perämäki
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引用次数: 1

摘要

背景:本研究的主要目的是研究两种广泛分布的植物——躺椅草和荨麻及其根际土壤中元素浓度的短期变化。方法:于2021年5月3日、10日和25日对植物和土壤进行取样。采样当天,分别于9:00、14:00、19:00采集植物和土壤3次。采用ICP-OES和ICP-MS分析技术测定植物和土壤样品中的元素。用拉曼光谱研究了有机化合物的变化。结果:各采样日期植物体内常量营养素和微量元素浓度在白天变化较大。在一天中不同时间采集的植物中许多元素的浓度差异具有统计学意义。不同采集日期植株中Na、Mg、P、K、Fe、Ba等元素的含量也存在显著差异。躺椅草和荨麻根际土壤的相对漫射发光强度在白天不同,两种植物根际土壤的相对漫射发光强度也不同,特别是在5月初。结论:植物体内元素浓度的日变化可能是多种因素综合作用的结果。在同一地点同时采集的躺椅草和荨麻的日元素变化差异可能是由于这些植物属于不同的分支。单子叶植物(躺躺草)和双子叶植物(荨麻)的日波动(也包括植物中元素浓度的规律变化)可能不同。大量营养素和微量元素浓度短期变化的新实验发现有助于对不同植物物种中元素积累的新认识,也有助于农业实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Short-term Variability of Macro- and Trace Elements in Elymus Repens L. and Urtica Dioica L.

Background: The main aim of the research was to study short-term changes in the concentrations of elements in two widely distributed plant species, couch grass and nettle and in the rhizosphere soil of the plants.

Methods: The sampling of plants and soil was carried out on three dates: 3, 10, and 25 May 2021. On each day of sampling, the plants and soil were collected three times: at 9:00, 14:00, and 19:00. The ICP-OES and ICP-MS analytical techniques were used for determination of elements in the plant and soil samples. The Raman spectroscopy was applied to study variations in the organic compounds.

Results: The concentrations of both macro-nutrients and trace elements in plants varied greatly over daytime on all dates of sampling. The differences between concentrations of many elements in the plants collected at different times during a day were statistically significant. There were also statistically significant differences between concentrations of some elements (Na, Mg, P, K, Fe, Ba) in the plants collected on different dates. The relative intensity of diffuse luminescence of the rhizosphere soil of couch grass and nettle was different during daytime and also differed between the soils taken from roots of the two plant species, especially in the beginning of May.

Conclusions: The experimental data indicates that the daily variations of the element concentrations in plants might be a result of multiple effects of various factors. The differences in the daily element variations in the couch grass and nettle growing in the same site and collected simultaneously might be due to the fact that these plants belong to different clades. The diurnal fluctuations (that also include regular changes in the element concentrations in plants) can be different for monocotyledons (couch grass) and dicotyledons (nettle). New experimental findings on short-term variations in the concentrations of macro-nutrients and trace elements can help to gain a new insight into accumulation of the elements in different plant species and also be useful in agricultural practice.

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