群体感应
胞外聚合物
微生物种群生物学
活性污泥
微生物
生物反应器
化学
污水处理
高丝氨酸
废水
细菌
生物量(生态学)
微生物代谢
序批式反应器
化学需氧量
生物膜
硝化作用
微生物学
食品科学
生物降解
生物强化
环境化学
制浆造纸工业
生物技术
生物
厌氧氨氧化菌
流出物
代谢途径
作者
T. Huang,Hongmei Ge,Zhenbing Wu,Yang Zhang,Lifeng Wang,Chenyuan Dang,Jie Fu
摘要
-N), chemical oxygen demand (COD), and suspended solids. The joint analysis of metagenomics, metatranscriptomics, and metametabolomics indicated the multifunctional bacteria (e.g., Amaricoccus, Hydrogenophaga, and Brevundimonas) played a very important role during the regulation of AHLs-mediated QS, which harbored functional genes associated with nitrogen metabolism, carbon metabolism, silver resistance, and AHLs response. The upregulation on glutathione-dependent metabolisms (e.g., glutathione-oxidized glutathione redox cycle) and biosynthesis of EPS (e.g., poly-N-acetylglucosamine) were beneficial for the enhancement of microbial resistance to nano-Ag. This study provided a potentially feasible strategy and important theoretical basis to enhance the robustness and restore the function of microorganisms in wastewater treatment systems by using AHLs-mediated QS regulation.
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