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Roles for root iron plaque in sequestration and uptake of heavy metals and metalloids in aquatic and wetland plants

机译:根铁菌斑在水生和湿地植物螯合和吸收重金属和准金属中的作用

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摘要

Toxic metal(loid) contamination of soil and sediment poses long term risk to soil and human health through plant-human or plant-animal-human food chain pathways. Iron plaque (IP) formation is frequent in aquatic and wetland plant species and is responsible for the sequestration of various metal(loids). The presence of IP may act as a buffer or barrier and may thus enhance or reduce the uptake of potentially phytotoxic metals and metalloids by plants. If IP acts as a barrier, then low IP producing macrophytes/aquatic plants may be better accumulators of toxic metals and may find use in constructed wetlands for remediation of pollutants, while high IP forming edible plant species could be safer for human consumption. Conversely, if IP acts as a buffer for mineral nutrients and toxic elements then those cultivars may be rich in nutrients, but may also cause toxicity. However, an ecotoxicological risk is also inevitable if IP rich macrophyte roots containing heavy metals are consumed by herbivores. In this review, we summarize the current understanding about the role of IP in metal and metalloid sequestration, uptake, and transport. Furthermore, we will address the role of root IP in Oryza sativa for arsenic (As) sequestration leading to lower grain As translocation, reducing the risk of human exposure.
机译:土壤和沉积物的有毒金属(胶体)污染通过植物-人类或植物-动物-人类食物链途径对土壤和人类健康构成长期风险。铁斑(IP)的形成在水生植物和湿地植物物种中很常见,并负责隔离各种金属(胶体)。 IP的存在可以充当缓冲剂或屏障,因此可以增强或减少植物对潜在植物毒性金属和准金属的吸收。如果IP成为障碍,那么产生低IP的大型植物/水生植物可能是有毒金属的更好蓄积者,并且可以在人工湿地中用于污染物的补救,而形成高IP的可食用植物物种可能更安全地供人类食用。相反,如果IP充当矿物质养分和有毒元素的缓冲剂,则这些品种可能富含养分,但也可能引起毒性。但是,如果食草动物消耗了富含IP的重金属植物根,其中含有重金属,那么生态毒理风险也是不可避免的。在这篇综述中,我们总结了当前对IP在金属和准金属螯合,吸收和转运中的作用的理解。此外,我们还将解决根IP在水稻中对砷(As)螯合的作用,从而降低谷物的As转运,从而降低人体暴露的风险。

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