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Changes in growth rate and macroelement and trace element accumulation in Hydrocharis morsus-ranae L. during the growing season in relation to environmental contamination

机译:生长率和宏观调节和痕量元素积累在羟基兰斯 - Ranae L中的变化。在环境污染中生长季节

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The temporal variations in plant chemistry connected with its life cycle may affect the cycling of elements in an ecosystem as well as determine the usefulness of the species in phytoremediation and bioindication. In this context, there is a gap in knowledge on the role of floating plants for elements cycling in aquatic reservoirs. The aim of the study was to determine if there are variations in Hydrocharis morsus-ranae (European frog-bit) bioaccumulation capacity and the growth rate of its population during the growing season and to test the impact of environmental pollution on these features. The content of macroelements (Ca, K, Mg, N, Na, P, S) and trace metals (Cd, Co, Cu, Cr, Hg, Fe, Mn, Ni, Pb, Zn) was determined in H. morsus-ranae collected monthly from June to October from habitats differing in environmental contamination. The results showed that the highest content of most trace metals (Co, Cr, Cu, Hg, Mn, Ni, Zn) and some nutrients (N, P) in plants as well as the greatest bioaccumulation efficiency occurred simultaneously in the beginning of the growing season. In the following months, a dilution effect (manifested by a decrease in content) related to the rapid growth was observed. Co, Mn, and Ni content in plant tissues reflected the level of environmental contamination throughout the growing season which makes H. morsus-ranae a potential biomonitor of pollution for these metals. Considering the great bioaccumulation ability, high sensitivity to contamination, and low biomass of European frog-bit in polluted systems, further investigation is required to assess the real phytoremediation capability of the species.
机译:与其生命周期相关的植物化学的时间变化可能影响生态系统中的元素的循环,以及确定植物中的物种的有用性和生物indication。在这种情况下,关于浮动植物在水产储层中循环的元素的作用存在差距。该研究的目的是判断羟基兰群岛(欧洲青蛙)生物积累能力和人口增长率是否存在变化,并在不断增长的季节中测试环境污染对这些特征的影响。在H. Morsus-中测定宏观重组(Ca,K,Mg,N,Na,P,S)和痕量金属(Cd,Co,Cu,Cr,Hg,Fe,Mn,Ni,Pb,Zn)中的含量每月从6月到10月从环境污染不同的栖息地收集月份。结果表明,植物中最多痕量金属(CO,Cr,Cu,Hg,Mn,Ni,Zn)和一些营养素(n,p)以及最大的生物积累效率在开始时发生最高含量生长季。在接下来的几个月中,观察到与快速生长有关的稀释效果(表现为含量减少)。植物组织中的CO,Mn和Ni含量反映了整个生长季节的环境污染水平,这使得H. Morsus-Ranae成为这些金属污染的潜在生物学。考虑到巨大的生物累积能力,对污染系统中的污染和低生物量的浓度高,需要进一步调查来评估物种的实际植物修复能力。

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