Khan Irfan Ullah, Qi Shan-Shan, Gul Farrukh, Manan Sehrish, Rono Justice Kipkorir, Naz Misbah, Shi Xin-Ning, Zhang Haiyan, Dai Zhi-Cong, Du Dao-Lin
School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang 212013, China.
School of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, China.
Plants (Basel). 2023 Feb 6;12(4):725. doi: 10.3390/plants12040725.
Heavy metals (HMs) normally occur in nature and are rapidly released into ecosystems by anthropogenic activities, leading to a series of threats to plant productivity as well as human health. Phytoremediation is a clean, eco-friendly, and cost-effective method for reducing soil toxicity, particularly in weedy plants (invasive plant species (IPS)). This method provides a favorable tool for HM hyperaccumulation using invasive plants. Improving the phytoremediation strategy requires a profound knowledge of HM uptake and translocation as well as the development of resistance or tolerance to HMs. This review describes a comprehensive mechanism of uptake and translocation of HMs and their subsequent detoxification with the IPS via phytoremediation. Additionally, the improvement of phytoremediation through advanced biotechnological strategies, including genetic engineering, nanoparticles, microorganisms, , and protein basis, is discussed. In summary, this appraisal will provide a new platform for the uptake, translocation, and detoxification of HMs via the phytoremediation process of the IPS.
重金属(HMs)通常存在于自然界中,并通过人为活动迅速释放到生态系统中,对植物生产力以及人类健康造成一系列威胁。植物修复是一种清洁、环保且经济高效的降低土壤毒性的方法,特别是在杂草植物(入侵植物物种(IPS))中。这种方法为利用入侵植物进行重金属超积累提供了一个有利工具。改进植物修复策略需要深入了解重金属的吸收和转运以及对重金属的抗性或耐受性的发展。本综述描述了重金属通过植物修复在入侵植物物种中的吸收、转运及其随后解毒的综合机制。此外,还讨论了通过先进生物技术策略(包括基因工程、纳米颗粒、微生物和蛋白质基础)改进植物修复的方法。总之,本评估将为通过入侵植物物种的植物修复过程实现重金属的吸收、转运和解毒提供一个新平台。