State Key Laboratory of Estuarine and Costal Research, East China Normal University, 3663 North Zhongshan Road, Shanghai 200062, China.
State Key Laboratory of Estuarine and Costal Research, East China Normal University, 3663 North Zhongshan Road, Shanghai 200062, China.
Sci Total Environ. 2018 May 15;624:48-54. doi: 10.1016/j.scitotenv.2017.12.105. Epub 2017 Dec 13.
Plastic trash is common in oceans. Terrestrial and marine ecosystem interactions occur in the intertidal zone where accumulation of plastic frequently occurs. However, knowledge of the plastic-associated microbial community (the plastisphere) in the intertidal zone is scanty. We used high-throughput sequencing to profile the bacterial communities attached to microplastic samples from intertidal locations around the Yangtze estuary in China. The structure and composition of plastisphere communities varied significantly among the locations. We found the taxonomic composition on microplastic samples was related to their sedimentary and aquatic origins. Correlation network analysis was used to identify keystone bacterial genera (e.g. Rhodobacterales, Sphingomonadales and Rhizobiales), which represented important microbial associations within the plastisphere community. Other species (i.e. potential pathogens) were considered as hitchhikers in the plastic attached microbial communities. Metabolic pathway analysis suggested adaptations of these bacterial assemblages to the plastic surface-colonization lifestyle. These adaptations included reduced "cell motility" and greater "xenobiotics biodegradation and metabolism." The findings illustrate the diverse microbial assemblages that occur on microplastic and increase our understanding of plastisphere ecology.
塑料垃圾在海洋中很常见。潮间带是陆地和海洋生态系统相互作用的地方,经常会有塑料积累。然而,关于潮间带中与塑料相关的微生物群落(塑料区系)的知识还很匮乏。我们使用高通量测序来描述中国长江口周围潮间带微塑料样本上附着的细菌群落。塑料区系群落的结构和组成在不同地点有显著差异。我们发现微塑料样本上的分类组成与其沉积物和水生来源有关。相关网络分析用于识别关键细菌属(例如红杆菌目、鞘氨醇单胞菌目和根瘤菌目),这些属代表了塑料区系群落中的重要微生物关联。其他物种(即潜在的病原体)被认为是附着在塑料上的微生物群落中的搭便车者。代谢途径分析表明,这些细菌组合适应了塑料表面定殖的生活方式。这些适应包括降低“细胞运动性”和增强“异生物质的生物降解和代谢”。这些发现说明了发生在微塑料上的微生物组合的多样性,并增加了我们对塑料区系生态学的理解。