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Phytohormonal Roles in Plant Responses to Heavy Metal Stress: Implications for Using Macrophytes in Phytoremediation of Aquatic Ecosystems

机译:植物反应对重金属应力的植物型作用:在水生生态系统植物中使用宏观物质的影响

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Heavy metals can represent a threat to the health of aquatic ecosystems. Unlike organic chemicals, heavy metals cannot be eliminated by natural processes such as their degradation into less toxic compounds, and this creates unique challenges for their remediation from soil, water, and air. Phytoremediation, defined as the use of plants for the removal of environmental contaminants, has many benefits compared to other pollution-reducing methods. Phytoremediation is simple, efficient, cost-effective, and environmentally friendly because it can be carried out at the polluted site, which simplifies logistics and minimizes exposure to humans and wildlife. Macrophytes represent a unique tool to remediate diverse environmental media because they can accumulate heavy metals from contaminated sediment via roots, from water via submerged leaves, and from air via emergent shoots. In this review, a synopsis is presented about how plants, especially macrophytes, respond to heavy metal stress; and we propose potential roles that phytohormones can play in the alleviation of metal toxicity in the aquatic environment. We focus on the uptake, translocation, and accumulation mechanisms of heavy metals in organs of macrophytes and give examples of how phytohormones interact with plant defense systems under heavy metal exposure. We advocate for a more in-depth understanding of these processes to inform more effective metal remediation techniques from metal-polluted water bodies. Environ Toxicol Chem 2020;00:1-16. (c) 2020 SETAC
机译:重金属可以代表对水生生态系统健康的威胁。与有机化学品不同,通过自然过程不能消除重金属,例如它们降解到较小的毒性化合物,这为其从土壤,水和空气的修复产生了独特的挑战。与其他污染减少方法相比,植物定义被定义为使用植物进行植物的使用,具有许多益处。植物修复简单,高效,经济高效,环保,因为它可以在污染的场所进行,这简化了物流并最大限度地减少了对人类和野生动物的暴露。 Macrophytes代表一个独特的工具来修复各种环境介质,因为它们可以通过根部通过浸没的叶子从水中累积重金属,通过浸没的叶子,通过紧急芽从空气中累积。在本文中,介绍了植物,尤其是宏细胞,响应重金属应力的概要概要;我们提出了植物激素可以在缓解水生环境中的金属毒性方面发挥作用的潜在作用。我们专注于宏观物质器官中重金属的摄取,易位和积累机制,并举例说明植物肠酮在重金属暴露下与植物防御系统相互作用。我们倡导更深入地了解这些过程,以便从金属污染的水体上通知更有效的金属修复技术。环境毒素化学2020; 00:1-16。 (c)2020 Setac

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