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典型过渡金属离子对异养硝化-好氧反硝化菌脱氮性能的影响及机制。

Influence and mechanism of typical transition metal ions on the denitrification performance of heterotrophic nitrification-aerobic denitrification bacteria.

机构信息

School of Chemistry and Chemical Engineering, Chongqing University of Technology, Chongqing, 400054, China.

School of Chemistry and Chemical Engineering, Chongqing University of Technology, Chongqing, 400054, China.

出版信息

Environ Res. 2024 Oct 1;258:119460. doi: 10.1016/j.envres.2024.119460. Epub 2024 Jun 19.

Abstract

To investigate the inhibitory effects of various transition metal ions on nitrogen removal and their underlying mechanisms, the single and combined effects of Cu Ni and Zn on Heterotrophic nitrification-aerobic denitrification (HN-AD) bacteria Acinetobacter sp. TAC-1 were studied in a batch experiment system. The results revealed that increasing concentrations of Cu and Ni had a detrimental effect on the removal of ammonium nitrogen (NH-N) and total nitrogen (TN). Specifically, Cu concentration of 10 mg/L, the TN degradation rate was 55.09%, compared to 77.60% in the control group. Cu exhibited a pronounced inhibitory effect. In contrast, Zn showed no apparent inhibitory effect on NH-N removal and even enhanced TN removal at lower concentrations. However, when the mixed ion concentration of Zn+Ni exceeded 5 mg/L, the removal rates of NH-N and TN were significantly reduced. Moreover, transition metal ions did not significantly impact the removal rates of chemical oxygen demand (COD). The inhibition model fitting results indicated that the inhibition sequence was Cu > Zn > Ni. Transcriptome analysis demonstrated that metal ions influence TAC-1 activity by modulating the expression of pivotal genes, including zinc ABC transporter substrate binding protein (znuA), ribosomal protein (rpsM), and chromosome replication initiation protein (dnaA) and DNA replication of TAC-1 under metal ion stress, leading to disruptions in transcription, translation, and cell membrane structure. Finally, a conceptual model was proposed by us to summarize the inhibition mechanism and possible response strategies of TAC-1 bacteria under metal ion stress, and to address the lack of understanding regarding the influence mechanism of TAC-1 on nitrogen removal in wastewater co-polluted by metal and ammonia nitrogen. The results provided practical guidance for the management of transition metal and ammonia nitrogen co-polluted water bodies, as well as the removal of high nitrogen.

摘要

为了研究各种过渡金属离子对氮去除的抑制作用及其潜在机制,在批式实验系统中研究了 Cu、Ni 和 Zn 单一及复合条件对异养硝化-好氧反硝化(HN-AD)菌不动杆菌(Acinetobacter sp.)TAC-1 的影响。结果表明,Cu 和 Ni 浓度的增加对氨氮(NH-N)和总氮(TN)的去除有不利影响。具体而言,10 mg/L 的 Cu 浓度下,TN 降解率为 55.09%,而对照组为 77.60%。Cu 表现出明显的抑制作用。相比之下,Zn 对 NH-N 去除没有明显的抑制作用,甚至在较低浓度下还能增强 TN 的去除。然而,当 Zn+Ni 混合离子浓度超过 5 mg/L 时,NH-N 和 TN 的去除率显著降低。此外,过渡金属离子对化学需氧量(COD)的去除率没有显著影响。抑制模型拟合结果表明,抑制顺序为 Cu>Zn>Ni。转录组分析表明,金属离子通过调节关键基因的表达来影响 TAC-1 的活性,包括锌 ABC 转运体底物结合蛋白(znuA)、核糖体蛋白(rpsM)和染色体复制起始蛋白(dnaA)。金属离子胁迫下 TAC-1 的 DNA 复制,导致转录、翻译和细胞膜结构受到干扰。最后,我们提出了一个概念模型来总结 TAC-1 细菌在金属离子胁迫下的抑制机制和可能的响应策略,并解决了 TAC-1 对金属和氨氮共污染废水中氮去除影响机制缺乏了解的问题。研究结果为管理过渡金属和氨氮共污染水体以及去除高氮提供了实际指导。

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