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Nitrotoga-like bacteria are previously unrecognized key nitrite oxidizers in full-scale wastewater treatment plants

机译:类硝基细菌是大型废水处理厂以前无法识别的关键亚硝酸盐氧化剂

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摘要

Numerous past studies have shown members of the genus Nitrospira to be the predominant nitrite-oxidizing bacteria (NOB) in nitrifying wastewater treatment plants (WWTPs). Only recently, the novel NOB ‘Candidatus Nitrotoga arctica' was identified in permafrost soil and a close relative was enriched from activated sludge. Still, little is known about diversity, distribution and functional importance of Nitrotoga in natural and engineered ecosystems. Here we developed Nitrotoga 16S rRNA-specific PCR primers and fluorescence in situ hybridization (FISH) probes, which were applied to screen activated sludge samples from 20 full-scale WWTPs. Nitrotoga-like bacteria were detected by PCR in 11 samples and reached abundances detectable by FISH in seven sludges. They coexisted with Nitrospira in most of these WWTPs, but constituted the only detectable NOB in two systems. Quantitative FISH revealed that Nitrotoga accounted for nearly 2% of the total bacterial community in one of these plants, a number comparable to Nitrospira abundances in other WWTPs. Spatial statistics revealed that Nitrotoga coaggregated with ammonia-oxidizing bacteria, strongly supporting a functional role in nitrite oxidation. This activity was confirmed by FISH in combination with microradiography, which revealed nitrite-dependent autotrophic carbon fixation by Nitrotoga in situ. Correlation of the presence or absence with WWTP operational parameters indicated low temperatures as a main factor supporting high Nitrotoga abundances, although in incubation experiments these NOB remained active over an unexpected range of temperatures, and also at different ambient nitrite concentrations. In conclusion, this study demonstrates that Nitrotoga can be functionally important nitrite oxidizers in WWTPs and can even represent the only known NOB in engineered systems.
机译:过去的许多研究表明,硝化螺菌属的成员是硝化废水处理厂(WWTP)中的主要亚硝酸盐氧化细菌(NOB)。直到最近,才在永冻土中发现了新颖的NOB“ Candidatus Nitrotoga arctica”,其近亲中也富含活性污泥。但是,人们对硝基硝基在自然和工程生态系统中的多样性,分布和功能重要性知之甚少。在这里,我们开发了Nitrotoga 16S rRNA特异性PCR引物和荧光原位杂交(FISH)探针,将其用于筛选20个大规模污水处理厂的活性污泥样品。通过PCR在11个样品中检测到了Nitrotoga样细菌,并通过FISH在7个污泥中检测到了丰富的细菌。在大多数这些污水处理厂中,它们与硝化螺菌并存,但构成了两个系统中唯一可检测到的NOB。定量FISH显示,在其中一种植物中,Nitrotoga占细菌总数的近2%,与其他污水处理厂中Nitrospira的丰度相当。空间统计数据显示,硝基硝基甲烷与氨氧化细菌聚集在一起,强烈支持亚硝酸盐氧化的功能性作用。 FISH与显微放射照相技术相结合证实了这一活性,该技术揭示了亚硝基托格糖原位固定亚硝酸盐依赖的自养碳。 WWTP运行参数的存在与否之间的相关性表明,低温是支持高硝基硝基丰度的主要因素,尽管在培养实验中,这些NOB在意外温度范围内以及在不同的亚硝酸盐浓度下仍保持活性。总而言之,这项研究表明,硝基硝基化合物在污水处理厂中是功能上重要的亚硝酸盐氧化剂,甚至可以代表工程系统中唯一已知的NOB。

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