生物膜
胞外聚合物
全氟辛酸
化学
群体感应
水生生态系统
细胞外
多糖
微生物
生物化学
细菌
新陈代谢
生物
微生物学
环境化学
机制(生物学)
失调
基因
胞外多糖
细胞信号
细胞生物学
水生环境
微生物代谢
基因组
作者
Yixia Yang,Qi Li,Yunxing Xiao,Yi-Fan Shen,Yumiao Zhang,Weizhen Zhang,Ningfei Lei,Xiangjun Pei,Yanhua Xie,Yixia Yang,Qi Li,Yunxing Xiao,Yi-Fan Shen,Yumiao Zhang,Weizhen Zhang,Ningfei Lei,Xiangjun Pei,Yanhua Xie
标识
DOI:10.1021/acs.est.5c06467
摘要
Perfluorooctanoic acid (PFOA) is prevalent in aquatic ecosystems and exhibits significant toxicity to aquatic organisms. Microorganisms can adhere to the surfaces of submerged plants, forming complex extracellular structures referred to as attached biofilms. However, the mechanisms underlying the regulation of biofilm formation by PFOA remain unclear. This study cultured plant-attached biofilms under PFOA stress to investigate the mechanisms by which PFOA regulates biofilm formation, utilizing metagenomics and metabolomics. Results show that the biofilm structure was significantly altered under PFOA exposure, characterized by an increase in polysaccharide and protein content. Furthermore, PFOA bound to proteins within extracellular polymeric substances contributes to a reduction in PFOA toxicity. PFOA regulates biofilm formation by modifying the content of signaling molecules and the abundance of genes (bapA and ABC.PE.S) associated with quorum sensing, establishing a natural barrier against the toxic effects of PFOA. In addition, PFOA was found to inhibit the metabolism of linoleic and linolenic acids, thus indirectly promoting the formation of biofilms, which allowed microbial aggregation and coresistance to the toxic effects of exogenous pollutants. This study provides a comprehensive understanding on the mechanisms by which PFOA regulates biofilm formation, which is crucial for enhancing our understanding of microbial processes in aquatic ecosystems.
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