College of Resources and Environment, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China.
School of Environment and Energy, South China University of Technology, Guangzhou 510006, China.
Sci Total Environ. 2024 May 20;926:171878. doi: 10.1016/j.scitotenv.2024.171878. Epub 2024 Mar 26.
Microplastics (MPs) and heavy metals often coexist in soil, drawing significant attention to their interactions and the potential risks of biological accumulation in the soil-plant system. This paper comprehensively reviews the factors and biochemical mechanisms that influence the uptake of heavy metals by plants, in the existence of MPs, spanning from rhizospheric soil to the processes of root absorption and transport. The paper begins by introducing the origins and current situation of soil contamination with both heavy metals and MPs. It then discusses how MPs alter the physicochemical properties of rhizospheric soil, with a focus on parameters that affect the bioavailability of heavy metals such as aggregates, pH, Eh, and soil organic carbon (SOC). The paper also examines the effect of this pollution on soil organisms and plant growth and reviews the mechanisms by which MPs affect the bioavailability and movement-transformation of heavy metals in rhizospheric soil. This examination emphasizes the roles of rhizospheric microbes, soil fauna, and root physiological metabolism. Finally, the paper outlines the research progress on the mechanisms by which MPs influence the uptake and transport of heavy metals by plant roots. Through this comprehensive review, this paper provides aims to provide environmental managers with a detailed understanding of the potential impact of the coexistence of MPs and heavy metals on the soil-plant ecosystem.
微塑料(MPs)和重金属通常共存于土壤中,这引起了人们对它们在土壤-植物系统中的相互作用和生物累积潜在风险的高度关注。本文全面综述了在 MPs 存在的情况下,影响植物对重金属吸收的因素和生化机制,涵盖了从根际土壤到根系吸收和运输过程。本文首先介绍了土壤中重金属和 MPs 污染的来源和现状。然后讨论了 MPs 如何改变根际土壤的物理化学性质,重点关注影响重金属生物有效性的参数,如团聚体、pH、Eh 和土壤有机碳(SOC)。本文还考察了这种污染对土壤生物和植物生长的影响,并综述了 MPs 影响根际土壤中重金属生物有效性和迁移转化的机制。这部分强调了根际微生物、土壤动物和根系生理代谢的作用。最后,本文概述了 MPs 影响植物根系对重金属吸收和转运的机制的研究进展。通过全面综述,本文旨在为环境管理者提供关于 MPs 和重金属共存对土壤-植物生态系统潜在影响的详细了解。