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有氧反硝化细菌——简单芽孢杆菌 H-b 耐冷机制的研究

Insight into the Cold Adaptation Mechanism of an Aerobic Denitrifying Bacterium: Bacillus simplex H-b.

机构信息

National Engineering Research Center for Cereal Fermentation and Food Biomanufacturing, Jiangnan University, Wuxi, Jiangsu, P. R. China.

Jiangsu Provincial Engineering Research Center for Bioactive Product Processing, Jiangnan University, Wuxi, Jiangsu, P. R. China.

出版信息

Appl Environ Microbiol. 2023 Feb 28;89(2):e0192822. doi: 10.1128/aem.01928-22. Epub 2023 Jan 19.

DOI:10.1128/aem.01928-22
PMID:36656033
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9972999/
Abstract

Psychrophilic bacteria with aerobic denitrification ability have promising potential for application in nitrogen-contaminated wastewater treatment, especially under cold conditions. A better understanding of the cold adaptation mechanism during aerobic denitrification would be beneficial for the practical application of this type of functional bacterium. In this study, Bacillus simplex H-b with good denitrification performance at 5°C was used to investigate the corresponding cold tolerance mechanism. Transcriptomics and nitrogen removal characterization experiments were conducted at different temperatures (5°C, 20°C, and 30°C). At low temperatures, more nitrogen was utilized for assimilation, accompanied by the accumulation of ATP and extracellular polymeric substances (EPS), rather than transforming inorganic nitrogen in the dissimilation pathway. In addition, the proportion of unsaturated fatty acids was higher in strains cultured at low temperatures. At the molecular level, the adjustment of membrane transport, synthesis of cofactors and vitamins, and transcriptional regulators might contribute to the survival of the strain under cold conditions. Moreover, nucleotide precursor synthesis, translation, and oxidative and temperature stress response mechanisms also enhanced the resistance of strain H-b to low temperatures. The results suggest that combining multiple regulatory mechanisms and synergistic adaptation to cold stress enabled the growth and relatively high nitrogen removal rate (27.22%) of strain H-b at 5°C. By clarifying the mechanism of regulation and cold resistance of strain H-b, a theoretical foundation for enhancing the application potential of this functional bacterium for nitrogen-contaminated wastewater treatment was provided. The newly isolated aerobic denitrifying bacterium Bacillus simplex H-b removed various forms of inorganic nitrogen (nitrate, nitrite, and ammonium) from wastewater, even when the temperature was as low as 5°C. Although this environmentally functional bacterium has been suggested as a promising candidate for nitrogen-contaminated water treatment at low temperatures, understanding its cold adaptation mechanism during aerobic denitrification is limited. In this study, the cold tolerance mechanism of this strain was comprehensively explained. Furthermore, a theoretical basis for the practical application of this type of functional bacterium for nitrogen removal in cold regions is provided. The study expands our understanding of the survival strategy of psychrophilic bacteria and hence supports their further utilization in wastewater treatment applications.

摘要

具有好氧反硝化能力的嗜冷细菌在氮污染废水处理中具有广阔的应用前景,特别是在低温条件下。深入了解好氧反硝化过程中的冷适应机制将有助于促进该功能菌的实际应用。本研究以 5°C 下具有良好反硝化性能的解淀粉芽孢杆菌 H-b 为研究对象,探讨其相应的耐冷机制。在不同温度(5°C、20°C 和 30°C)下进行转录组学和脱氮特性实验。在低温下,更多的氮用于同化,伴随着 ATP 和胞外聚合物(EPS)的积累,而不是在异化途径中转化无机氮。此外,低温培养的菌株中不饱和脂肪酸的比例更高。在分子水平上,膜转运的调节、辅酶和维生素的合成以及转录调控因子可能有助于菌株在低温下的存活。此外,核苷酸前体合成、翻译以及氧化和温度应激响应机制也增强了菌株 H-b 对低温的抗性。结果表明,多种调控机制的结合以及对冷应激的协同适应使菌株 H-b 能够在 5°C 下生长并保持较高的脱氮率(27.22%)。通过阐明菌株 H-b 的调控和耐冷机制,为增强该功能菌在氮污染废水处理中的应用潜力提供了理论基础。新分离的好氧反硝化菌解淀粉芽孢杆菌 H-b 能够从废水中去除各种形式的无机氮(硝酸盐、亚硝酸盐和铵盐),即使温度低至 5°C。虽然这种环境功能菌已被认为是低温下氮污染水处理的有前途的候选菌,但对其好氧反硝化过程中的冷适应机制了解有限。本研究全面解释了该菌株的耐冷机制。此外,为在寒冷地区利用该类功能菌进行氮去除提供了理论依据。该研究拓展了我们对嗜冷菌生存策略的认识,从而支持了它们在废水处理应用中的进一步利用。