Feng Cuijie, Liang Ziyan, Liao Xin, Lin Kairong, Zhai Yujia, Liu Gang, Malpei Francesca, Hu Anyi
Center for Water Resources and Environment, School of Civil Engineering, Sun Yat-sen University, Guangzhou 510275, PR China.
CAS Key Laboratory of Urban Pollutant Conversion, Institute of Urban Environment, Chinese Academy of Science, Xiamen 361021, PR China.
Environ Sci Technol. 2025 Jun 3;59(21):10554-10566. doi: 10.1021/acs.est.5c03796. Epub 2025 May 20.
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 ( = 0.60, < 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 (positive correlation) and (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 in reservoirs and in bays, while and 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.
微塑料(MPs)作为微生物群落定殖的载体,在城市水生生态系统中形成了被称为塑料球的独特生态系统。然而,微生物、胞外聚合物(EPS)和微塑料之间的相互作用仍知之甚少。本研究调查了两个具有代表性的沿海城市水域不同塑料球上的微生物群落及其EPS分泌行为。置换多元方差分析表明,微塑料类型对水库环境中的微生物群落结构有显著影响( = 0.60, < 0.001),突出了微塑料类型在优质城市水体中的显著影响。特定的微生物门和属被确定为不同塑料球上EPS组成变化的关键贡献者。层次划分结果确定酸杆菌门、硝化螺旋菌门和浮霉菌门为对EPS组成有积极影响的有影响力的门类。Spearman相关性分析指出 (正相关)和 (负相关)是影响EPS动态的关键属。此外,EPS相关基因丰度与观察到的EPS组成差异密切相关。与蛋白质生物合成相关的主要基因在水库中为 ,在海湾中为 ,而在海湾中多糖生物合成的主要基因是 和 。这项研究增进了我们对城市水系统中微生物-EPS-微塑料相互作用的理解,为微塑料污染的生态修复和风险评估提供了关键见解。
PeerJ Comput Sci. 2017
Nat Rev Microbiol. 2025-2