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The Denitrification Characteristics of Pseudomonas stutzeri SC221-M and Its Application to Water Quality Control in Grass Carp Aquaculture

机译:斯氏假单胞菌SC221-M的反硝化特性及其在草鱼养殖水质控制中的应用

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摘要

To reduce ammonium and nitrite in aquaculture water, an isolate of the denitrifying bacterium Pseudomonas stutzeri, SC221-M, was obtained. The effects of various nitrogen and carbon sources, the ratio of carbon to nitrogen and temperature on bacterial growth, denitrification rates and the expression levels of nirS and nosZ in SC221-M were studied. The following conditions were determined to be optimal for growth and denitrification in SC221-M: NaNO2 as the nitrogen source, sodium citrate as the carbon source, a carbon to nitrogen ratio range of 4–8, and a temperature range of 20–35°C. Subsequently, SC221-M and the Bacillus cereus BSC24 strain were selected to generate microbial preparations. The results showed that addition of the microbial preparations decreased various hydrochemical parameters, including total dissolved solids, ammonium, nitrite, total nitrogen and the chemical oxygen demand. Nitrogen removal rates were highest on day 9; the removal rates of BSC24, SC221-M, a mixed preparation and a 3× mixed preparation were 24.5%, 26.6%, 53.9% and 53.4%, respectively. The mixed preparation (SC221-M+BSC24) was more effective at removing nitrogen than either the SC221-M or BSC24 preparation. Roche 454 pyrosequencing and subsequent analysis indicated that the control and other groups formed separate clusters, and the microbial community structure in the water changed significantly after the addition of microbial preparations. These results indicate that the addition of microbial preparations can improve both the water quality and microbial community structure in an experimental aquaculture system. P. stutzeri strain SC221-M and its related microbial preparations are potential candidates for the regulation of water quality in commercial aquaculture systems.
机译:为了减少水产养殖用水中的铵盐和亚硝酸盐,获得了反硝化细菌斯氏假单胞菌SC221-M的分离株。研究了不同氮源和碳源,碳氮比和温度对SC221-M细菌生长,反硝化率以及nirS和nosZ表达水平的影响。确定以下条件对于SC221-M的生长和反硝化是最佳的:NaNO2作为氮源,柠檬酸钠作为碳源,碳氮比范围为4-8,温度范围为20-35° C。随后,选择SC221-M和蜡状芽孢杆菌BSC24菌株以产生微生物制剂。结果表明,添加微生物制剂降低了各种水化学参数,包括总溶解固体,铵,亚硝酸盐,总氮和化学需氧量。第9天脱氮率最高; BSC24,SC221-M,混合制剂和3x混合制剂的去除率分别为24.5%,26.6%,53.9%和53.4%。混合制剂(SC221-M + BSC24)在脱氮方面比SC221-M或BSC24制剂更有效。 Roche 454焦磷酸测序和随后的分析表明,对照组和其他组形成了单独的簇,添加微生物制剂后,水中的微生物群落结构发生了显着变化。这些结果表明,在实验性水产养殖系统中,添加微生物制剂可以改善水质和微生物群落结构。 Stutzeri菌株SC221-M及其相关的微生物制剂是调节商业水产养殖系统水质的潜在候选者。

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