Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment, Jinan University, Guangzhou, 510632, China.
Chemosphere. 2021 Jun;272:129870. doi: 10.1016/j.chemosphere.2021.129870. Epub 2021 Feb 9.
Riverine runoff is a significant transport pathway for microplastics (MPs) discharged from land-based sources to marine environments where MPs accumulate. Knowledge of riverine MP-associated biofilms will improve the understanding of the fate and potential effects of MPs in marine environments. This study aimed to characterize the microbial biofilms colonizing MPs in the riverine water of the Pearl River Delta, China, and identify the seasonal, geographical and environmental influences on MP-associated communities. We sampled MPs and the surrounding surface water from eight outlets in three seasons and analyzed their microbial communities by Illumina sequencing of the 16S rRNA gene libraries. Across all sampling seasons and locations, abundant MP-colonizing taxa belonged to the phylum Proteobacteria, which suggested initial biofilm development on those MPs. The structure and composition of MP-attached microbial communities varied with respect to season and location, and the microbial diversity of the MP-associated biofilm communities decreased in June compared with that in the April and November sampling events. Opportunistic pathogens of the genus Acinetobacter were significantly enriched on the MP surfaces for all sampling events. Among the 15 environmental variables examined, the main drivers of MP-associated biofilm community composition included IC, alkalinity, TOC, TDS, Cl, NO, NO and pH. This study provides an insight into the environmental factors that shape microbial biofilm colonization on MPs in estuary environments and a further understanding of the structure, diversity and ecological roles of MP-associated communities.
河流径流是陆地源排放的微塑料(MPs)进入海洋环境的重要传输途径,在海洋环境中 MPs 会积累。了解河流 MP 相关生物膜将有助于更好地理解 MPs 在海洋环境中的归宿和潜在影响。本研究旨在描述中国珠江三角洲河流水中 MPs 上定殖的微生物生物膜,并确定季节性、地理和环境因素对 MP 相关群落的影响。我们在三个季节从三个地点的八个出水口采集 MPs 和周围地表水,并通过 Illumina 测序对 16S rRNA 基因文库进行分析,以研究它们的微生物群落。在所有采样季节和地点,丰度较高的 MP 定殖类群属于变形菌门,这表明这些 MPs 上存在初始生物膜的发展。MP 附着微生物群落的结构和组成随季节和地点而异,与 4 月和 11 月采样事件相比,6 月 MP 相关生物膜群落的微生物多样性降低。在所有采样事件中,机会性病原体不动杆菌属在 MP 表面明显富集。在所研究的 15 个环境变量中,影响 MP 相关生物膜群落组成的主要驱动因素包括电导率、碱度、TOC、TDS、Cl、NO、NO 和 pH。本研究深入了解了塑造河口环境中 MPs 上微生物生物膜定殖的环境因素,进一步理解了 MP 相关群落的结构、多样性和生态作用。