Microbial Dynamics on Different Microplastics in Coastal Urban Aquatic Ecosystems

The Critical Roles of Extracellular Polymeric Substances

Journal Article (2025)
Author(s)

Cuijie Feng (Sun Yat-sen University)

Ziyan Liang (Sun Yat-sen University)

Xin Liao (Chinese Academy of Sciences)

Kairong Lin (Sun Yat-sen University)

Yujia Zhai (Beijing Normal University)

Gang Liu (TU Delft - Sanitary Engineering, Chinese Academy of Sciences)

Francesca Malpei (Politecnico di Milano)

Anyi Hu (Xiamen University)

DOI related publication
https://doi.org/10.1021/acs.est.5c03796 Final published version
More Info
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Publication Year
2025
Language
English
Journal title
Environmental Science and Technology
Issue number
21
Volume number
59
Pages (from-to)
10554–10566
Downloads counter
167
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Abstract

Microplastics (MPs) serve as carriers for microbial community colonization, forming unique ecosystems known as plastispheres in urban aquatic ecosystems. However, interactions among microbes, extracellular polymeric substances (EPS), and MPs remain poorly understood. This study investigates microbial consortia and their EPS secretion behaviors across various plastispheres at two representative coastal urban water sites. Permutational multivariate analysis of variance revealed that MP type significantly influenced microbial community structures in reservoir environments (R2 = 0.60, p < 0.001), highlighting the pronounced impact of MP types in high-quality urban waters. Specific microbial phyla and genera were identified as key contributors to EPS compositional variations across different plastispheres. Hierarchical partitioning results identified Acidobacteria, Nitrospirae, and Planctomycetes as influential phyla positively affecting EPS composition. Spearman correlation analysis pinpointed Robiginitialea (positive correlation) and Fimbriiglobus (negative correlation) as critical genera influencing EPS dynamics. Moreover, EPS-related gene abundance corresponded closely with observed EPS compositional differences. Dominant genes associated with protein biosynthesis included xapD in reservoirs and glnA in bays, while glmS and eno were predominant for polysaccharide biosynthesis in bays. This research advances our understanding of microbial-EPS-MP interactions in urban water systems, offering critical insights into ecological remediation and risk assessment of MP pollution.