Zinc Accumulation Pattern in Native Cortaderia nitida in High Andes (Ecuador) and Potential for Zinc Phytoremediation in Soil

Karina I. Paredes-Páliz, Benito Mendoza, Jennifer Mesa-Marín
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Abstract

The aim of this work was to determine the content of heavy metals in soil and, for the first time, in wild Cortaderia nitida, and to discuss its potential as a metal phytoremediator plant. We sampled sediments (bulk and rhizosphere) and C. nitida (roots and shoots) in three nearby spots with different land uses (urban, industrialized and agricultural) along the Chibunga river basin (Ecuador). We analyzed the physico-chemical parameters in soil and heavy metal contents in soil and plants. The agricultural sediments showed the highest conductivity and redox potential, but the lowest pH. Among all the metals analyzed in soil and plants, we only found significant values of Zn and Fe. We observed clear differences in patterns of Zn distribution throughout soil and plants among the three areas sampled, thus suggesting that soil properties played an important role in Zn compartmentalization. Also, C. nitida demonstrated effective Zn translocation from roots to shoots, especially in farmlands (translocation factors between 1.64 and 2.51). Together with the results obtained for other Cortaderia species in metal-polluted areas, this study proposes C. nitida as a candidate to further study its metal phytoremediation potential and encourages this research in heavy metal-enriched soils.
厄瓜多尔安第斯高山地区本地 Cortaderia nitida 的锌积累模式和土壤中锌的植物修复潜力
这项工作的目的是测定土壤中的重金属含量,并首次测定野生 Cortaderia nitida 中的重金属含量,探讨其作为金属植物中介植物的潜力。我们在 Chibunga 河流域(厄瓜多尔)附近三个不同土地用途(城市、工业和农业)的地点采集了沉积物(块状和根瘤)和 C. nitida(根和芽)的样本。我们分析了土壤中的物理化学参数以及土壤和植物中的重金属含量。农业沉积物的电导率和氧化还原电位最高,但 pH 值最低。在土壤和植物中分析的所有金属中,我们只发现了锌和铁的显著值。我们观察到,在三个取样地区,锌在土壤和植物中的分布模式存在明显差异,这表明土壤特性在锌的分区中发挥了重要作用。此外,C. nitida 还表现出有效的锌从根部向嫩枝的转化,尤其是在农田中(转化系数介于 1.64 和 2.51 之间)。结合在金属污染地区对其他 Cortaderia 物种的研究结果,本研究建议将 C. nitida 作为进一步研究其金属植物修复潜力的候选植物,并鼓励在富含重金属的土壤中开展这方面的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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