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生态位与栖息地:老化微塑料和湿地类型对细菌群落组装的影响

Niche vs. habitat: Insights of aging microplastics and wetland types on bacterial community assembly.

作者信息

Shi Yansong, Liang Longrui, Meng Liang, Hou Jingwen

机构信息

School of Environmental and Geographical Sciences, Shanghai Normal University, Shanghai 200234, China.

School of Environmental and Geographical Sciences, Shanghai Normal University, Shanghai 200234, China; Key Laboratory of Environment Remediation and Ecological Health, Ministry of Education, College of Environmental Resource Sciences, Zhejiang University, Hangzhou 310058, China; Yangtze River Delta Urban Wetland Ecosystem National Field Scientific Observation and Research Station, Shanghai 201722, China.

出版信息

J Environ Sci (China). 2026 Jan;159:221-232. doi: 10.1016/j.jes.2025.04.010. Epub 2025 Apr 5.

Abstract

Microorganisms can colonize the surface of microplastics (MPs) to form a distinctive microbiome, known as a "plastisphere" which is regarded as an anthropogenic niche for microbial growth. However, bacterial community assembly in virgin and aging MP plastispheres across different habitats is poorly understood. This study aims to assess the variations in bacterial community assembly across different niches and habitats with an in situ experiment, in which constructed forest wetland (FW), natural lake wetland (LW), and lotus pond wetland (LP) were habitats, and plastispheres of virgin and aging low-density polyethylene (LDPE) MPs, as well as surrounding wetland soils were niches. Significant niche-related differences in bacterial communities were observed, with lower diversity and enrichment of potential plastic-degrading bacteria in the plastisphere than in the soil bacterial communities. Furthermore, habitat-related differences exerted a more pronounced influence on the beta-diversity patterns of the bacterial communities. The linear regression analyses indicated that the local species pool contributed more to bacterial community assembly in the LW wetland, whereas the relative abundance of species was the primary factor in the LP wetland. The null model analysis indicated that plastisphere bacterial communities were predominantly driven by the stochastic process, with a more deterministic assembly observed in the LP wetland and soil bacterial communities. Additionally, the primary ecological process shaping plastisphere communities shifted from drift in the virgin LDPE to homogenising dispersal in the aging LDPE. This study provides new insights into the fate and ecological impacts of MPs in wetlands, thereby facilitating the effective regulations of plastic pollution.

摘要

微生物可在微塑料(MPs)表面定殖,形成独特的微生物群落,即所谓的“塑料圈”,它被视为微生物生长的人为生态位。然而,不同生境中原始和老化的MP塑料圈中的细菌群落组装情况却鲜为人知。本研究旨在通过一项原位实验评估不同生态位和生境中细菌群落组装的差异,该实验以人工构建的森林湿地(FW)、天然湖泊湿地(LW)和荷花池湿地(LP)作为生境,以原始和老化的低密度聚乙烯(LDPE) MPs的塑料圈以及周围湿地土壤作为生态位。观察到细菌群落存在显著的生态位相关差异,塑料圈中潜在的塑料降解细菌的多样性和丰度低于土壤细菌群落。此外,生境相关差异对细菌群落的β多样性模式影响更为显著。线性回归分析表明,当地物种库对LW湿地中细菌群落组装的贡献更大,而物种相对丰度是LP湿地中的主要因素。零模型分析表明,塑料圈细菌群落主要受随机过程驱动,而在LP湿地和土壤细菌群落中观察到更多确定性组装。此外,塑造塑料圈群落的主要生态过程从原始LDPE中的漂移转变为老化LDPE中的均匀扩散。本研究为湿地中MPs的归宿和生态影响提供了新的见解,从而有助于有效管控塑料污染。

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