College of Resources and Environment, Hunan Agricultural University, Changsha, 410128, PR China.
Ecotoxicology. 2022 Aug;31(6):873-883. doi: 10.1007/s10646-022-02565-z. Epub 2022 Jul 14.
Nanoscale zero-valent iron particles (NZVI) are widely used in a variety of industries owing to their advantageous mechanical, physical, and chemical properties. These particles can be released into environmental media, including water, soil, and air, through several pathways. NZVI in the ecosystem can be taken up, excreted and distributed within organisms, which is harmful to plants, animals and humans. Plants play a significant role as producers in the ecological circle and can both positively and negatively affect the ecological behavior of NZVI. Therefore, understanding the relationship between plants and NZVI is likely to be of great value for the assessment of NZVI-associated risks and future research directions. In this review, we summarize the current knowledge on the uptake, distribution, and accumulation of NZVI in plants; the phytotoxicity triggered by NZVI exposure at the physiological, biochemical, and molecular levels; and the defense mechanism used by plants to defend against NZVI-induced insults. We further discuss the toxic effects of NZVI on soil animals and microorganisms as well as the risk posed by the presence of NZVI in the food chain.
纳米零价铁颗粒(NZVI)由于其优越的机械、物理和化学性质,被广泛应用于各种行业。这些颗粒可以通过多种途径释放到环境介质中,包括水、土壤和空气。生态系统中的 NZVI 可以被生物体吸收、排泄和分布,这对植物、动物和人类都是有害的。植物作为生态循环中的生产者起着重要的作用,它们可以对 NZVI 的生态行为产生积极和消极的影响。因此,了解植物与 NZVI 之间的关系可能对评估与 NZVI 相关的风险和未来的研究方向具有重要意义。在这篇综述中,我们总结了目前关于 NZVI 在植物中的吸收、分布和积累的知识;NZVI 暴露在生理、生化和分子水平上引发的植物毒性;以及植物用来抵御 NZVI 诱导损伤的防御机制。我们进一步讨论了 NZVI 对土壤动物和微生物的毒性影响,以及 NZVI 在食物链中存在的风险。