The Key Laboratory for Crop Germplasm Resource of Zhejiang Province, Zhejiang University, Hangzhou, Zhejiang 310058, China.
School of Environment and Safety Engineering, Jiangsu University, Zhenjiang 212013, China.
Funct Plant Biol. 2023 Nov;50(11):870-888. doi: 10.1071/FP23021.
Heavy metals and metalloids (HMs) contamination in the environment has heightened recently due to increasing global concern for food safety and human livability. Zinc (Zn2+ ) is an important nutrient required for the normal development of plants. It is an essential cofactor for the vital enzymes involved in various biological mechanisms of plants. Interestingly, Zn2+ has an additional role in the detoxification of HMs in plants due to its unique biochemical-mediating role in several soil and plant processes. During any exposure to high levels of HMs, the application of Zn2+ would confer greater plant resilience by decreasing oxidative stress, maintaining uptake of nutrients, photosynthesis productivity and optimising osmolytes concentration. Zn2+ also has an important role in ameliorating HMs toxicity by regulating metal uptake through the expression of certain metal transporter genes, targeted chelation and translocation from roots to shoots. This review examined the vital roles of Zn2+ and nano Zn in plants and described their involvement in alleviating HMs toxicity in plants. Moving forward, a broad understanding of uptake, transport, signalling and tolerance mechanisms of Zn2+ /zinc and its nanoparticles in alleviating HMs toxicity of plants will be the first step towards a wider incorporation of Zn2+ into agricultural practices.
近年来,由于人们越来越关注食品安全和人类宜居性,环境中的重金属和类金属(HMs)污染加剧。锌(Zn2+)是植物正常发育所需的重要营养物质。它是参与植物各种生物机制的重要酶的必需辅助因子。有趣的是,由于 Zn2+在几种土壤和植物过程中的独特生化介导作用,它在植物的 HMs 解毒中具有额外的作用。在任何暴露于高水平 HMs 的情况下,通过减少氧化应激、维持养分吸收、光合作用生产力和优化渗透物浓度,应用 Zn2+将赋予植物更大的弹性。Zn2+还通过表达某些金属转运基因、靶向螯合和从根部到茎部的转运来调节金属吸收,在减轻 HMs 毒性方面发挥着重要作用。本综述探讨了 Zn2+和纳米 Zn 在植物中的重要作用,并描述了它们在减轻植物 HMs 毒性中的作用。展望未来,广泛了解 Zn2+/锌及其纳米粒子在减轻植物 HMs 毒性中的吸收、运输、信号转导和耐受机制将是将 Zn2+更广泛纳入农业实践的第一步。