4.8 Article

Nitrate removal by alkali-resistant Pseudomonas sp. XS-18 under aerobic conditions: Performance and mechanism

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BIORESOURCE TECHNOLOGY
卷 344, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2021.126175

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Aerobic nitrate reduction; Nitrogen metabolism; Alkali-resistance; Mechanism; Nitrogen removal

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A new type of aerobic nitrification-reducing bacteria, Pseudomonas XS-18, was isolated and studied for its nitrate removal capacity and alkali tolerance mechanism. XS-18 demonstrated high efficiency in nitrate removal and conversion in strong alkaline conditions, showing potential for application in alkaline wastewater treatment.
To improve poor nitrate removal by microorganisms under strong alkaline conditions, a new type of aerobic nitrification-reducing bacteria was isolated in this study. Using nitrogen balance and genome information, the capacity of Pseudomonas XS-18 to remove nitrate and the mechanism of alkali tolerance were analyzed. At pH 11.0, XS-18 could remove 12.17 mg N/(L.h) nitrate. At C/N ratios of 13.0 and 25 degrees C, nitrite and ammonia nitrogen were barely enriched. XS-18 could reduce nitrate through dissimilation and assimilation, and 21.74% and 77.39% of nitrate was converted into cellular components and organic nitrogen, respectively. Meanwhile, functional genes (nirBD, nasAB, gdhA, glnA, and gltBD) associated with nitrogen metabolism were determined. In addition, Na+/H+ antiporters (MnhACDEFG, PhaACDEFG, NhaCD and TrkAH) and a cell surface protein (SlpA) from the XS-18 genome, as well as compatible solutes that help stabilize intracellular pH, were also characterized. XS-18 possessed significant potential in alkaline wastewater treatment.

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