首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Analysis of the polyphosphate-accumulating microflora in phosphorus-eliminating anaerobic-aerobic activated sludge systems by using diaminopropane as a biomarker for rapid estimation of Acinetobacter spp.
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Analysis of the polyphosphate-accumulating microflora in phosphorus-eliminating anaerobic-aerobic activated sludge systems by using diaminopropane as a biomarker for rapid estimation of Acinetobacter spp.

机译:以二氨基丙烷为生物标记快速分析不动杆菌属菌种分析除磷厌氧-好氧的活性污泥系统中的聚磷酸盐累积菌群。

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摘要

Polyphosphate-accumulating gram-negative bacteria were isolated from different anaerobic-aerobic activated sludge systems with diverse processes for enhanced biological phosphorus (P) elimination. Of 22 isolates, 10 were allocated to the genus Acinetobacter by using multiple-test systems and soluble protein and polyamine patterns. As diaminopropane (DAP) appears to be the characteristic main polyamine compound produced by Acinetobacter spp., it was used as a biomarker for the genus. The high DAP contents of representative samples from municipal wastes with enhanced biological P elimination indicated that Acinetobacter spp. can be dominant organisms in sewage treatment plants with low organic loading and nitrification and denitrification steps. Contrary to accepted opinion, sludge from treatment plants with efficient P removal and high organic loading had a low DAP content, indicating that bacteria other than Acinetobacter spp. are responsible for enhanced biological P elimination in these plants.
机译:从不同的厌氧-好氧活性污泥系统中分离出具有聚磷酸盐积累能力的革兰氏阴性细菌,并采用多种工艺来增强生物磷(P)的消除。通过使用多重测试系统和可溶性蛋白和多胺模式,在22株分离物中,有10株被分配到不动杆菌属中。由于二氨基丙烷(DAP)似乎是不动杆菌属产生的特征性主要多胺化合物,因此被用作该属的生物标记。来自城市废物的代表性样品的高DAP含量具有增强的生物P消除能力,表明不动杆菌属。在污水处理厂中,有机污染物含量低,硝化和反硝化步骤的优势生物可能是主要微生物。与公认的观点相反,具有有效除磷和高有机负荷的处理厂污泥的DAP含量低,表明除不动杆菌属之外的细菌。负责增强这些植物中生物磷的清除。

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