MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China; Tianjin Engineering Research Center of Environmental Diagnosis and Contamination Remediation, Tianjin 300350, China.
MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China; Tianjin Engineering Research Center of Environmental Diagnosis and Contamination Remediation, Tianjin 300350, China.
J Hazard Mater. 2024 Mar 5;465:133417. doi: 10.1016/j.jhazmat.2023.133417. Epub 2024 Jan 2.
The widespread presence of soil microplastics (MPs) has become a global environmental problem. MPs of different properties (i.e., types, sizes, and concentrations) are present in the environment, while studies about the impact of MPs having different properties are limited. Thus, this study investigated the effects of three common polymers (polystyrene, polyethylene, and polypropylene) with two concentrations (0.01% and 0.1% w/w) on growth and stress response of lettuce (Lactuca sativa L.), soil enzymes, and rhizosphere microbial community. Lettuce growth was inhibited under MPs treatments. Moreover, the antioxidant system, metabolism composition, and phyllosphere microbiome of lettuce leaves was also perturbed. MPs reduced phytase activity and significantly increased dehydrogenase activity. The diversity and structure of rhizosphere microbial community were disturbed by MPs and more sensitive to polystyrene microplastics (PSMPs) and polypropylene microplastics (PPMPs). In general, the results by partial least squares pathway models (PLS-PMs) showed that the presence of MPs influenced the soil-rhizosphere-plant system, which may have essential implications for assessing the environmental risk of MPs.
土壤微塑料(MPs)的广泛存在已成为全球性的环境问题。不同性质(即类型、大小和浓度)的 MPs 存在于环境中,而关于具有不同性质的 MPs 影响的研究有限。因此,本研究调查了三种常见聚合物(聚苯乙烯、聚乙烯和聚丙烯)在两种浓度(0.01%和 0.1%w/w)下对生菜(生菜)生长和应激反应、土壤酶和根际微生物群落的影响。MPs 处理抑制了生菜的生长。此外,生菜叶片的抗氧化系统、代谢成分和叶际微生物组也受到干扰。 MPs 降低了植酸酶活性,显著增加了脱氢酶活性。 MPs 还扰乱了根际微生物群落的多样性和结构,对聚苯乙烯微塑料(PSMPs)和聚丙烯微塑料(PPMPs)更敏感。总的来说,偏最小二乘路径模型(PLS-PMs)的结果表明, MPs 的存在影响了土壤-根际-植物系统,这可能对评估 MPs 的环境风险具有重要意义。