Zhang Xuanxuan, Ding Dina, Liu Yinglin, Yao Zhiming, Duan Pingping, Yuan Hanyu, Fan Hanzhong, Dai Yanhui
Institute of Coastal Environmental Pollution Control, Key Laboratory of Marine Environment and Ecology (Ministry of Education), Ocean University of China, Qingdao 266100, China.
School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.
Nanomaterials (Basel). 2025 Jun 11;15(12):902. doi: 10.3390/nano15120902.
Sediments are important repositories for microplastics (MPs) which exhibit higher microbial community richness and greater diversity than corresponding aqueous phases. Recently, the effects of MPs on microorganisms in sediments have received widespread attention. This review summarizes current knowledge on how MPs alter microbial diversity, composition, function, and biogeochemical cycling in sedimentary environments. The impacts of MPs on microorganisms in sediments can be affected by several factors, including MP type, the sedimentary environment, exposure time, and exposure concentration. Generally, biodegradable MPs cause more significant changes to the microbial community structure in sediments due to degradability and high bioavailability. Short-term exposure to MPs may enhance microbial diversity, and long-term exposure may lead to a reduction in diversity. High concentrations cause more serious impacts on microbial diversity than low concentrations. MPs mainly interfere with cycles of carbon, nitrogen, phosphorus, and sulfur in the sedimentary environment by changing microbial community structure, enzyme activity, and gene abundance. In conclusion, key research gaps are pinpointed, and future research directions presented. This review provides valuable insights into the health risks and ecological responses of MPs in sedimentary environments.
沉积物是微塑料(MPs)的重要储存库,与相应的水相相比,沉积物中微塑料的微生物群落丰富度更高、多样性更大。近年来,微塑料对沉积物中微生物的影响受到广泛关注。本综述总结了目前关于微塑料如何改变沉积环境中微生物多样性、组成、功能和生物地球化学循环的知识。微塑料对沉积物中微生物的影响可能受几个因素的影响,包括微塑料类型、沉积环境、暴露时间和暴露浓度。一般来说,可生物降解的微塑料由于其可降解性和高生物利用度,会对沉积物中的微生物群落结构造成更显著的变化。短期暴露于微塑料可能会增加微生物多样性,而长期暴露可能会导致多样性降低。高浓度比低浓度对微生物多样性的影响更严重。微塑料主要通过改变微生物群落结构、酶活性和基因丰度来干扰沉积环境中的碳、氮、磷和硫循环。总之,明确了关键研究空白,并提出了未来的研究方向。本综述为沉积环境中微塑料的健康风险和生态响应提供了有价值的见解。