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Characterization of the In Situ Ecophysiology of Novel Phylotypes in Nutrient Removal Activated Sludge Treatment Plants

机译:营养去除活性污泥处理厂中新型植物型的原位生态生理特性

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摘要

An in depth understanding of the ecology of activated sludge nutrient removal wastewater treatment systems requires detailed knowledge of the community composition and metabolic activities of individual members. Recent 16S rRNA gene amplicon surveys of activated sludge wastewater treatment plants with nutrient removal indicate the presence of a core set of bacterial genera. These organisms are likely responsible for the bulk of nutrient transformations underpinning the functions of these plants. While the basic activities of some of these genera in situ are known, there is little to no information for the majority. This study applied microautoradiography coupled with fluorescence in situ hybridization (MAR-FISH) for the in situ characterization of selected genus-level-phylotypes for which limited physiological information is available. These included Sulfuritalea and A21b, both within the class Betaproteobacteria, as well as Kaga01, within sub-group 10 of the phylum Acidobacteria. While the Sulfuritalea spp. were observed to be metabolically versatile, the A21b and Kaga01 phylotypes appeared to be highly specialized.
机译:对活性污泥脱氮废水处理系统的生态学的深入了解需要对各个成员的社区组成和代谢活动有详细的了解。对活性污泥废水处理厂进行营养去除后的最新16S rRNA基因扩增子调查表明,存在细菌核心种。这些生物可能是支撑这些植物功能的大部分营养转化的原因。虽然其中一些属的基本活动是已知的,但对于大多数人而言,几乎没有甚至没有信息。这项研究应用微放射自显影结合荧光原位杂交(MAR-FISH)来对有限的生理信息可用的选定属水平系统型进行原位表征。这些包括Betaproteobacteria类中的Sulfuritalea和A21b,以及酸性细菌门10亚组中的Kaga01。而Sulfuritalea spp。观察到具有代谢功能,A21b和Kaga01系统型似乎高度专门化。

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