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Nitrogen removal characteristics of Pseudomonas stutzeri F11 and its application in grass carp culture

机译:斯氏假单胞菌F11的脱氮特性及其在草鱼养殖中的应用

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This study was designed to investigate the denitrification characteristics of Pseudomonas stutzeri F11 under different environmental conditions and to evaluate the effect of these characteristics on nitrogen removal and the water microbiome in an experimental grass carp aquaculture system. The results showed that the optimal growth conditions of strain F11 were (1) ammonia-nitrogen (N), nitrite-N, or nitrate-N as sole N source; (2) initial ammonia-N concentration of 10–30?mg N/l; (3), initial nitrite-N concentration of 200?mg N/l; (4) sodium citrate as carbon source; (5) rotation (r) speed of 200?r/min; a C:N ratio of between 2 and 10; (6) culture at 32–37?°C. The addition of P. stutzeri F11 to the experimental grass carp aquaculture system reduced the levels of ammonia-N, nitrite-N, and total N in the water over an extended range, but had no effect on nitrate-N level. Results of the 454 pyrosequencing analysis indicated that the structure of the microbial community in the aquaculture water changed significantly after the addition of P. stutzeri F11 preparations. The addition of P. stutzeri F11 to the aquaculture system also altered the microbiome metabolism in the water, especially the bacteria involved in nitrogen metabolism. These results suggest that the addition of P. stutzeri F11 to an experimental grass carp aquaculture system decrease nitrogen levels and alter the microbial community structure of the water; as such, this bacterial strain could be a potential candidate for the regulation of water quality in aquaculture systems.
机译:本研究旨在研究不同环境条件下斯氏假单胞菌F11的反硝化特性,并评估这些特性对实验性草鱼养殖系统中氮去除和水微生物组的影响。结果表明,菌株F11的最佳生长条件为(1)以氨氮(N),亚硝酸盐(N)或硝酸盐(N)作为唯一氮源。 (2)初始氨氮浓度为10–30?mg N / l; (3)亚硝酸盐-N的初始浓度为200?mg N / l; (4)柠檬酸钠作为碳源; (5)旋转(r)速度为200?r / min; C∶N比在2至10之间; (6)在32–37?C下培养。在实验性草鱼养殖系统中添加斯图氏疟原虫F11可以在较大范围内降低水中氨氮,亚硝酸盐氮和总氮的含量,但对硝酸盐氮的含量没有影响。 454焦磷酸测序分析的结果表明,添加Stutzeri F11制剂后,水产养殖水中微生物群落的结构发生了显着变化。在水产养殖系统中添加斯图氏疟原虫F11还改变了水中的微生物组代谢,特别是参与氮代谢的细菌。这些结果表明,将P. stutzeri F11添加到实验性草鱼养殖系统中会降低氮含量并改变水的微生物群落结构。因此,该细菌菌株可能是调节水产养殖系统水质的潜在候选者。

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