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藜麦(Chenopodium quinoa Willd)对镉和铅的耐受潜力评估及其对植物修复和人类健康的影响。

Assessment of cadmium and lead tolerance potential of quinoa (Chenopodium quinoa Willd) and its implications for phytoremediation and human health.

作者信息

Amjad Muhammad, Iqbal Muhammad Mohsin, Abbas Ghulam, Farooq Abu Bakar Umer, Naeem Muhammad Asif, Imran Muhammad, Murtaza Behzad, Nadeem Muhammad, Jacobsen Sven-Erik

机构信息

Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehar, Pakistan.

Department of Plant and Environmental Sciences, University of Copenhagen, Quinoa Quality, Teglvaerksvej 10, 4420, Regstrup, Denmark.

出版信息

Environ Geochem Health. 2022 May;44(5):1487-1500. doi: 10.1007/s10653-021-00826-0. Epub 2021 Feb 2.

Abstract

Soil contamination with Cd and Pb is a worldwide problem which not only degrades the environment but also poses a serious threat for human and animal health. Phytoremediation of these contaminated soils using halophytic plants like quinoa presents an opportunity to clean the soils and use them for crop production. The current experiment was performed to evaluate the Cd and Pb tolerance potential of quinoa and subsequently its implications for human health. Three weeks old quinoa seedlings were exposed to Cd (30, 60 and 90 mg kg) and Pb (50, 100 and 150 mg kg) levels along with a control. The results revealed that plant height decreased at highest levels of soil Cd and Pb. Shoot, root and seed dry weight decreased with increasing levels of soil Cd and Pb. Tissue Cd and Pb concentrations increased with increasing levels of Cd and Pb in soil, the highest Cd was found in roots while the lowest in seeds. The highest Pb concentration was found in shoots at low Pb level, while in roots at high level of Pb. Increasing levels of Cd and Pb stimulated the activities of measured antioxidant enzymes and decreased membrane stability index. The health risk assessments of Cd and Pb revealed that hazard quotient was < 1 for both the metals. However, the results of total hazard quotient showed that value was < 1 for Pb and 1.19 for Cd showing potential carcinogenicity. This study demonstrates that quinoa has good phytoremediation potential for Cd and Pb however, the risk of Cd toxicity is challenging for human health.

摘要

镉和铅对土壤的污染是一个全球性问题,不仅会破坏环境,还会对人类和动物健康构成严重威胁。利用藜麦等盐生植物对这些受污染土壤进行植物修复,为清理土壤并将其用于作物生产提供了契机。当前的实验旨在评估藜麦对镉和铅的耐受潜力及其对人类健康的影响。将三周大的藜麦幼苗暴露于镉(30、60和90毫克/千克)和铅(50、100和150毫克/千克)水平下,并设置一个对照。结果显示,在土壤镉和铅含量最高时植物高度降低。地上部、根部和种子干重随着土壤镉和铅含量的增加而减少。组织中的镉和铅浓度随着土壤中镉和铅含量的增加而增加,根部镉含量最高,种子中最低。低铅水平时地上部铅浓度最高,高铅水平时根部铅浓度最高。镉和铅含量的增加刺激了所测抗氧化酶的活性,并降低了膜稳定性指数。镉和铅的健康风险评估显示,两种金属的危害商均<1。然而,总危害商的结果显示,铅的值<1,镉为1.19,表明镉具有潜在致癌性。本研究表明,藜麦对镉和铅具有良好的植物修复潜力,然而,镉毒性风险对人类健康具有挑战性。

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