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联合镉锌相互作用改变了迷迭香对锰、铅、铜的吸收。

Combined cadmium-zinc interactions alter manganese, lead, copper uptake by Melissa officinalis.

机构信息

Lodz University of Technology, Institute of General and Ecological Chemistry, 90-924, Lodz, Zeromskiego 116, Poland.

University of Lodz, Laboratory of Plants Ecophysiology. Faculty of Biology and Environmental Protection, 90-237, Lodz, Banacha 12/16, Poland.

出版信息

Sci Rep. 2020 Feb 3;10(1):1675. doi: 10.1038/s41598-020-58491-9.

Abstract

Farmland soil typical for the Polish rural environment was used in pot experiment to estimate the impact of cadmium and zinc on the manganese, lead and copper uptake by lemon balm (Melissa officinalis L). Bioavailable and total forms of investigated metals in soil and metal concentrations in plants were determined by atomic absorption spectrometry. The plant photosynthesis indicators were also examined. Intensification of photosynthesis upon the high zinc and cadmium soil supplementation was observed. This effect was not detected at low metal concentrations. ANOVA proved that cadmium and zinc treatments influenced manganese, lead and copper transfer from soil and their concentration in plants. Zinc uptake and accumulation in either roots or above-ground parts in plant was inversely proportional to cadmium concentration in soil. Manganese concentration in roots decreased upon the soil supplementation with either zinc or cadmium. It suggests that the latter ions are transported via symplastic pathways and compete with manganese for similar transporters. The opposite situation was observed for lead and copper. Soil supplementation with cadmium and zinc affects manganese, lead and copper concentrations and photosynthesis intensity in lemon balm plant. The following combined interactions in either normal or stress conditions are important indicators of the migration pathways.

摘要

农田土壤是波兰农村环境的典型代表,我们在盆栽实验中利用这种土壤来评估镉和锌对皱叶留兰香( Melissa officinalis L.)吸收锰、铅和铜的影响。采用原子吸收光谱法测定土壤中可利用态和全量态金属以及植物中的金属浓度。还检查了植物光合作用指标。我们观察到,在高锌和镉土壤补充的情况下,光合作用会增强。在低金属浓度下,这种效应没有被检测到。方差分析证明,镉和锌处理会影响锰、铅和铜从土壤中的迁移及其在植物中的浓度。植物根系或地上部分对锌的吸收和积累与土壤中镉的浓度呈反比。土壤中补充锌或镉会导致根部锰浓度降低。这表明后两种离子通过共质体途径运输,并与锰竞争相同的载体。而铅和铜则呈现相反的情况。土壤中补充镉和锌会影响皱叶留兰香植物中的锰、铅和铜浓度以及光合作用强度。在正常或胁迫条件下,这些联合作用是迁移途径的重要指标。

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