Gao Ya-Juan, Zhang Ting, Hu Ling-Kang, Liu Shi-Yuan, Li Chen-Chen, Jin Yong-Sheng, Liu Hong-Bin
Key Laboratory of Urban Agriculture, College of Bioscience and Resources Environment, Beijing University of Agriculture, Beijing 102206, China.
Key Laboratory of Non-Point Source Pollution Control, Ministry of Agriculture and Rural Affairs/Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Microorganisms. 2024 Feb 23;12(3):451. doi: 10.3390/microorganisms12030451.
The low-temperature environment significantly inhibits the growth and metabolism of denitrifying bacteria, leading to an excessive concentration of ammonia nitrogen and total nitrogen in sewage treatment plants during the cold season. In this study, an efficient denitrifying strain of heterotrophic nitrification-aerobic denitrification (HN-AD) bacteria named HS2 was isolated and screened from industrial sewage of a chemical factory in Inner Mongolia at 8 °C. The strain was confirmed to be , a colorless rod-shaped bacterium. When cultured with sodium succinate as the carbon source, a carbon-to-nitrogen ratio of 20-30, a shaking rate of 150-180 r/min, and an initial pH of 6-10, the strain HS2 exhibited excellent nitrogen removal at 8 °C. Through the results of whole-genome sequencing, gene amplification, and gas product detection, the strain HS2 was determined to possess key enzyme genes in both nitrification and denitrification pathways, suggesting a HN-AD pathway of NH-N → NHOH → NON → NO → NO → N. At 8 °C, the strain HS2 could completely remove ammonia nitrogen from industrial sewage with an initial concentration of 127.23 mg/L. Microbial species diversity analysis of the final sewage confirmed sp. as the dominant genus, which indicated that the low-temperature denitrifying strain HS2 plays an important role in nitrogen removal in actual low-temperature sewage.
低温环境显著抑制反硝化细菌的生长和代谢,导致寒冷季节污水处理厂氨氮和总氮浓度过高。在本研究中,从内蒙古某化工厂8℃的工业污水中分离筛选出一株高效的异养硝化-好氧反硝化(HN-AD)细菌,命名为HS2。该菌株被确认为无色杆状细菌。以琥珀酸钠为碳源,碳氮比为20-30,摇床转速为150-180 r/min,初始pH值为6-10进行培养时,菌株HS2在8℃表现出优异的脱氮性能。通过全基因组测序、基因扩增和气体产物检测结果,确定菌株HS2在硝化和反硝化途径中均拥有关键酶基因,表明其具有NH-N→NHOH→NON→NO→NO→N的HN-AD途径。在8℃时,菌株HS2能够完全去除初始浓度为127.23 mg/L的工业污水中的氨氮。对最终污水的微生物物种多样性分析证实 sp. 为优势属,这表明低温反硝化菌株HS2在实际低温污水脱氮中发挥着重要作用。