Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, 1 Xikang Road, Nanjing, 210098, PR China.
Environ Pollut. 2023 Nov 15;337:122616. doi: 10.1016/j.envpol.2023.122616. Epub 2023 Sep 25.
Polybrominated diphenyl ether contamination in sediments poses serious threats to human health and ecological safety. Despite the broad application of submerged macrophytes for remediating pollutants, their regulatory influence on bacterial communities in contaminated sediments remains unclear. Herein, we analyzed the effects of decabromodiphenyl ether (BDE-209) and Hydrilla verticillata on sediment bacterial community and function using 16S rRNA gene sequencing and sediment metabolomics. Results showed that BDE-209 significantly inhibited sediment bacterial diversity and metabolic functions. It also enhanced bacterial interactions and altered both the bacterial community and metabolite composition. Uridine and inosine were critical metabolites that positively co-occurred with bacterial taxa inhibited by BDE-209. Notably, planting H. verticillata effectively alleviated the adverse impacts of BDE-209 by reducing its residuals, increasing the total organic carbon, and modifying metabolic profiles. Such mitigation was evidenced by enhancing bacterial diversity, restoring metabolic functions, and attenuating bacterial interactions. However, mitigation effectiveness depended on treatment time. Additionally, propionic acid, palmitic acid, and palmitoleic acid may facilitate the restoration of phylum Proteobacteria and class Planctomycetacia in H. verticillata planted sediment. Together, these findings improve understanding of BDE-209's impacts on aquatic ecosystems and provide valuable insights for ecological restoration using submerged macrophytes.
多溴联苯醚污染沉积物对人类健康和生态安全构成严重威胁。尽管水生植物被广泛应用于修复污染物,但它们对污染沉积物中细菌群落的调节作用尚不清楚。本文采用 16S rRNA 基因测序和沉积物代谢组学方法,分析了十溴联苯醚(BDE-209)和黑藻对沉积物细菌群落和功能的影响。结果表明,BDE-209 显著抑制了沉积物细菌多样性和代谢功能。它还增强了细菌间的相互作用,并改变了细菌群落和代谢物组成。尿苷和肌苷是与 BDE-209 抑制的细菌分类群呈正相关的关键代谢物。值得注意的是,种植黑藻通过降低 BDE-209 的残留量、增加总有机碳和改变代谢谱,有效缓解了 BDE-209 的不利影响。这种缓解作用表现在增加了细菌多样性、恢复了代谢功能和减弱了细菌间的相互作用。然而,缓解效果取决于处理时间。此外,丙酸、棕榈酸和棕榈油酸可能有助于修复种植黑藻沉积物中门变形菌门和纲浮霉菌门的细菌。总之,这些发现提高了对 BDE-209 对水生生态系统影响的认识,并为利用水生植物进行生态恢复提供了有价值的见解。