Institute of Plant Nutrition, Resources and Environment, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.
Institute of Quality Standard and Testing Technology, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.
J Hazard Mater. 2023 Apr 5;447:130788. doi: 10.1016/j.jhazmat.2023.130788. Epub 2023 Jan 20.
Combined pollution from microplastics (MPs) and cadmium (Cd) can influence soil environment and soil biota, altering plant growth and development, and Cd mobilization. We investigated the effects of polystyrene (PS) and polypropylene (PP) MPs alongside Cd on soil Cd bioavailability, rhizosphere soil metabolomics, bacterial community structure, and maize (Zea mays L.) growth in two soil types (red soil and cinnamon soil). Although the addition of PS/PP-Cd promoted Cd accumulation in maize plants overall, there were large-particle-size- and small-particle-size-dependent effects in the red soil and cinnamon soil, respectively. The difference is mainly due to the capacity of the large particle size MPs to significantly reduce soil pH, improve soil electrical conductivity (EC), promote active Cd, and intensify Cd mobilization in red soil. In contrast, small-size MPs in cinnamon soil promoted the synthesis and secretion of rhizosphere amino acids and soil metabolites, thus promoting Cd absorption by maize roots. Soil microorganisms also improved Cd bioavailability via C-related functional bacteria. Overall, our study provides novel insights on the potential effects of combined MPs and Cd pollution on soil ecology and agricultural production, enhancing our understanding of rhizosphere metabolites in different soils.
微塑料(MPs)和镉(Cd)的复合污染会影响土壤环境和土壤生物群,改变植物的生长和发育以及 Cd 的迁移。我们研究了聚苯乙烯(PS)和聚丙烯(PP) MPs 与 Cd 对两种土壤(红壤和肉桂土)中土壤 Cd 生物有效性、根际土壤代谢组学、细菌群落结构和玉米(Zea mays L.)生长的影响。尽管 PS/PP-Cd 的添加总体上促进了玉米植株中 Cd 的积累,但在红壤和肉桂土中分别存在大粒径和小粒径依赖性效应。这种差异主要是由于大粒径 MPs 显著降低土壤 pH 值、提高土壤电导率 (EC)、促进活性 Cd 和加剧红土中 Cd 迁移的能力所致。相比之下,肉桂土中的小粒径 MPs 促进了根际氨基酸和土壤代谢物的合成和分泌,从而促进了玉米根系对 Cd 的吸收。土壤微生物也通过与 C 相关的功能细菌提高了 Cd 的生物有效性。总体而言,我们的研究提供了关于 MPs 和 Cd 污染对土壤生态和农业生产的潜在影响的新见解,增强了我们对不同土壤中根际代谢物的理解。