Han Lingzhuo, Gu Haiping, Lu Wenjie, Li Hanyin, Peng Wan-Xi, Ling Ma Nyuk, Lam Su Shiung, Sonne Christian
College of Forestry, Henan Agricultural University, Zhengzhou, 450002, China.
College of Forestry, Henan Agricultural University, Zhengzhou, 450002, China.
Chemosphere. 2023 Dec;344:140307. doi: 10.1016/j.chemosphere.2023.140307. Epub 2023 Sep 26.
As chromium (Cr) in ecosystems affects human health through food chain exposure, phytoremediation is an environmentally friendly and efficient way to reduce chromium pollution in the environment. Here, we review the mechanism of absorption, translocation, storage, detoxification, and regulation of Cr in plants. The Cr(VI) form is more soluble, mobile, and toxic than Cr(III), reflecting how various valence states of Cr affect environmental risk characteristics, physicochemical properties, toxicity, and plant uptake. Plant root's response to Cr exposure leads to reactive oxygen species (ROS) generation and apoptosis. Cell wall immobilization, vacuole compartmentation, interaction of defense proteins and organic ligand with Cr, and removal of reactive oxygen species by antioxidants continue plant life. In addition, the combined application of microorganisms, genetic engineering, and the addition of organic acids, nanoparticles, fertilization, soil amendments, and other metals could accelerate the phytoremediation process. This review provides efficient methods to investigate and understand the complex changes of Cr metabolism in plants. Preferably, fast-growing, abundantly available biomass species should be modified to mitigate Cr pollution in the environment as these green and efficient remediation technologies are necessary for the protection of soil and water ecology.
由于生态系统中的铬(Cr)通过食物链暴露影响人类健康,植物修复是减少环境中铬污染的一种环境友好且高效的方法。在此,我们综述了植物对铬的吸收、转运、储存、解毒及调控机制。六价铬(Cr(VI))比三价铬(Cr(III))更易溶解、迁移且毒性更大,这反映了铬的不同价态如何影响环境风险特征、理化性质、毒性及植物吸收。植物根系对铬暴露的反应会导致活性氧(ROS)生成及细胞凋亡。细胞壁固定、液泡区室化、防御蛋白和有机配体与铬的相互作用以及抗氧化剂对活性氧的清除维持了植物的生命。此外,微生物、基因工程的联合应用以及添加有机酸、纳米颗粒、肥料、土壤改良剂和其他金属可加速植物修复过程。本综述提供了有效方法来研究和理解植物中铬代谢的复杂变化。优选地,应改良生长迅速、生物量丰富的物种以减轻环境中的铬污染,因为这些绿色高效的修复技术对于保护土壤和水生态是必要的。