Perturbation of clopyralid on bio-denitrification and nitrite accumulation: Long-term performance and biological mechanism

亚硝酸盐还原酶 亚硝酸盐 反硝化 化学 新陈代谢 微生物 生物化学 环境化学 适应 微生物代谢 胞外聚合物 食品科学 细菌 硝酸盐 生物 氮气 植物 有机化学 生物膜 遗传学
作者
Suyun Sun,Yanan Hou,Wei Wei,Hafiz Muhammad Adeel Sharif,Cong Huang,Bing‐Jie Ni,Haibo Li,Yuanyuan Song,Caicai Lu,Yi Han,Jianbo Guo
出处
期刊:Environmental science & ecotechnology [Elsevier]
卷期号:9: 100144-100144 被引量:74
标识
DOI:10.1016/j.ese.2021.100144
摘要

The contaminant of herbicide clopyralid (3,6-dichloro-2- pyridine-carboxylic acid, CLP) poses a potential threat to the ecological system. However, there is a general lack of research devoted to the perturbation of CLP to the bio-denitrification process, and its biological response mechanism remains unclear. Herein, long-term exposure to CLP was systematically investigated to explore its influences on denitrification performance and dynamic microbial responses. Results showed that low-concentration of CLP (<15 mg/L) caused severe nitrite accumulation initially, while higher concentrations (35-60 mg/L) of CLP had no further effect after long-term acclimation. The mechanistic study demonstrated that CLP reduced nitrite reductase (NIR) activity and inhibited metabolic activity (carbon metabolism and nitrogen metabolism) by causing oxidative stress and membrane damage, resulting in nitrite accumulation. However, after more than 80 days of acclimation, almost no nitrite accumulation was found at 60 mg/L CLP. It was proposed that the secretion of extracellular polymeric substances (EPS) increased from 75.03 mg/g VSS at 15 mg/L CLP to 109.97 mg/g VSS at 60 mg/L CLP, which strengthened the protection of microbial cells and improved NIR activity and metabolic activities. Additionally, the biodiversity and richness of the microbial community experienced a U-shaped process. The relative abundance of denitrification- and carbon metabolism-associated microorganisms decreased initially and then recovered with the enrichment of microorganisms related to the secretion of EPS and N-acyl-homoserine lactones (AHLs). These microorganisms protected microbe from toxic substances and regulated their interactions among inter- and intra-species. This study revealed the biological response mechanism of denitrification after successive exposure to CLP and provided proper guidance for analyzing and treating herbicide-containing wastewater.
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