微塑料
表土
土壤水分
环境科学
生态系统
土壤生物学
底土
土工试验
环境化学
微生物种群生物学
生态学
土壤科学
化学
地质学
生物
细菌
古生物学
作者
Huanyu Liu,Yue Lin,Yuanyuan Zhao,Jiatong Li,Yan Fu,Hui Deng,Dan Feng,Qipei Li,Huamei Yu,Ying Zhang,Chengjun Ge
标识
DOI:10.1016/j.scitotenv.2022.157790
摘要
Microplastics (MPs) are classified as emerging pollutants and greatly threatens soil ecosystems. To determine the impact of microplastic migration on soil bacterial diversity, we conducted a 90-day indoor soil column simulation test. Soil and microplastic (granular polystyrene, polypropylene MPs) samples were collected from different soil layers on days 30, 60, and 90. The downward migration trend of MPs was obvious, and its surface functional groups, hydrophobic properties, and crystallinity changed. Bacterial diversity was significantly higher in the surrounding soil than on microplastic surfaces. Also, the topsoil has more bacterial diversity than the middle soil. A higher number of OTUs were detected on microplastic surfaces for the middle soil than in the topsoil. Proteobacteria abundance on microplastic surfaces in the topsoil gradually increased over the course of the experiment, while an opposite trend was observed for the middle soil. Nevertheless, Proteobacteria abundances in both layers were higher than in the surrounding soils. MPs alters the bacterial community composition of soils and provides unique substrates for colonization. The impacts of MPs on soil bacterial communities were better understood in this study. Our findings highlighted the relevance of MPs in soil ecosystems as well as the potential threats they pose.
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