Uptake and Translocation of Some Heavy Metals by Rice Crop (Oryza sativa) in Paddy Soils

G. Rahimi, Z. Kolahchi, A. Charkhabi
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引用次数: 26

Abstract

Abstract Accumulation of heavy metals in edible crops is amongst major international concerns today. While consuming Lenjan variety of rice is very popular in Iran, limited evidence exists on its safety. Amid increasing public concern about the safety of locally grown and imported rice in the market, a field study was carried out to investigate uptake and translocation of Cd, Pb, Ni, and Zn by a local variety of rice crop (Oryza sativa) exposed to contaminated water. At harvest time and in paddy fields, 41 soil and plant samples were collected from four locations of Lenjan, central Iran; irrigated from Zayandeh Rood River. In the laboratory, different parts of the plant were milled, digested via acid digestion method, and then analysed for Cd, Pb, Ni and Zn using atomic absorption spectrophotometry. The results showed that average concentrations of Cd, Pb, Ni and Zn were 1.07, 17.22, 1.73 and 13.75 mg/kg in the plant’s stem; and 1.27, 12.32, 1.099 and 19.39 mg/kg in its grain, respectively. In general, both in the plant’s stem and grain, the Cd and Pb concentrations were much higher than the FAO/WHO standard and labelled as harmful for consumers. Moreover, among the studied heavy metals, Ni transported very weakly, while Cd and Zn conveyed most easily into the plant’s stem and grain. Of course, Pb was the least mobile metal. However, it had highly accumulated in the plant’s stem and grain.
水稻土壤中某些重金属的吸收和转运
重金属在食用作物中的积累是当今国际关注的主要问题之一。虽然食用Lenjan品种的大米在伊朗非常受欢迎,但关于其安全性的证据有限。在公众对市场上本地种植和进口大米的安全性日益关注的背景下,开展了一项实地研究,调查当地品种水稻(Oryza sativa)暴露于受污染的水中对Cd、Pb、Ni和Zn的吸收和转运。在收获季节和水田中,从伊朗中部Lenjan的四个地点收集了41个土壤和植物样本;从Zayandeh路河灌溉。在实验室中,将植物的不同部位磨碎,用酸消化法消化,然后用原子吸收分光光度法分析Cd, Pb, Ni和Zn。结果表明:茎中Cd、Pb、Ni和Zn的平均浓度分别为1.07、17.22、1.73和13.75 mg/kg;籽粒含量分别为1.27、12.32、1.099和19.39 mg/kg。总的来说,在植物茎和籽粒中,镉和铅的浓度都远远高于粮农组织/世界卫生组织的标准,并被标记为对消费者有害。此外,在所研究的重金属中,Ni的运输非常弱,而Cd和Zn最容易进入植物的茎和籽粒。当然,铅是最不容易移动的金属。然而,它在植物的茎和籽粒中高度积累。
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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