Dong Xuri, Zhu Lixin, Wu Ruiming, Li Changjun, Li Daoji
State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai 200062, China; Plastic Marine Debris Research Center, East China Normal University, Shanghai 200241, China; Region Training and Research Center on Plastic Marine Debris and Microplastics, IOC-UNESCO, 200241, China.
State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai 200062, China.
Sci Total Environ. 2023 Feb 1;858(Pt 1):159769. doi: 10.1016/j.scitotenv.2022.159769. Epub 2022 Oct 26.
Environmental problems caused by microplastics (MPs) are attracting global attention. The ecological risks of bacteria attached to MPs have not been studied in detail under low temperature conditions. Here, MPs in surface water were sampled in winter from the Changjiang (or Yangtze) River Estuary. The physical and chemical characteristics of the MPs were identified, and the diversity and species composition of bacteria on the surface water MPs were analyzed. Phenotypic prediction analysis was used to analyze the potential risk of bacteria in the biofilm on the surfaces of MPs. The main chemical composition in the MPs in the surface water were PP (polypropylene), PE (polyethylene), PS (polystyrene) and other light weight MPs. Sampling sites played a decisive role in the bacterial species composition. The potential plastic-degrading bacterium Acinetobacter and the potential pathogenic bacterium Pseudomonas showed significant differences across different sampling sites. Microbial communities on the surfaces of MPs in winter were not significantly different from planktonic bacteria in the water body. Phenotypic prediction results showed that bacteria on the surface of MPs had a marked capacity to form biofilms, but a low pathogenicity risk. Based on the results of biodiversity analysis and phenotypic prediction, the potential ecological risk of bacteria in biofilms on MP surfaces is lower at low temperatures. In addition, the numerical simulation results show that the possibility of bacteria attached to MPs from the Changjiang River entering the Pacific Ocean in winter is small. MPs attached bacteria in the Changjiang estuary have low ecological risk to the estuary and the Pacific Ocean in winter.
微塑料(MPs)引起的环境问题正受到全球关注。附着在微塑料上的细菌在低温条件下的生态风险尚未得到详细研究。在此,于冬季从长江河口采集了地表水的微塑料。鉴定了微塑料的物理和化学特性,并分析了地表水微塑料表面细菌的多样性和物种组成。采用表型预测分析来分析微塑料表面生物膜中细菌的潜在风险。地表水中微塑料的主要化学成分是PP(聚丙烯)、PE(聚乙烯)、PS(聚苯乙烯)和其他轻质微塑料。采样地点对细菌物种组成起决定性作用。潜在的塑料降解菌不动杆菌和潜在的病原菌假单胞菌在不同采样地点存在显著差异。冬季微塑料表面的微生物群落与水体中的浮游细菌没有显著差异。表型预测结果表明,微塑料表面的细菌具有显著的形成生物膜的能力,但致病风险较低。基于生物多样性分析和表型预测结果,低温下微塑料表面生物膜中细菌的潜在生态风险较低。此外,数值模拟结果表明,冬季长江微塑料附着细菌进入太平洋的可能性较小。长江口附着细菌的微塑料在冬季对河口和太平洋的生态风险较低。