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Examining substrate uptake patterns of Rhodocyclus-related PAO in full-scale EBPR plants by using the MAR-FISH technique

机译:使用MAR-FISH技术检查大规模EBPR植物中红景天相关PAO的底物吸收模式

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While recognised as the important population responsible for enhanced biological phosphorus removal (EBPR), detailed knowledge on the physiology of Rhodocyclus-related polyphosphate accumulating organisms (PAO) has yet to be grasped. The objective of this study was to examine the in situ substrate uptake patterns of Rhodocyclus-related PAO present in full-scale EBPR plants by the combined technique of microautoradiography-fluorescent in situ hybridization (MAR-FISH). The presence of these PAO in the four investigated plants was confirmed by FISH and they constituted 17%, 9%, 8%, and 7% of the sludge community. By using MAR-FISH technique, Rhodocyclus-related PAO in all the plants demonstrated similar anaerobic substrate uptake patterns. They were capable of assimilating acetate, aspartate and glutamate under anaerobic condition but they showed negative uptake with palmitate. A significant fraction of the MAR-positive cells assimilated acetate, aspartate or glutamate was found to be Rhadocyclus-related PAO. Dual staining with DAPI and FISH showed that these PAO also accumulated polyphosphate aerobically with aspartate and glutamate as carbon source. The ability of assimilating amino acids besides acetate strongly indicates the versatile physiology of Rhodocyclus-related PAO, which could benefit them to achieve predominance in EBPR activated sludge.
机译:尽管被公认为负责增强生物除磷(EBPR)的重要人群,但仍未掌握有关与红景天有关的多磷酸盐累积生物(PAO)的生理学的详细知识。这项研究的目的是通过微放射自显影-荧光原位杂交技术(MAR-FISH)研究在大规模EBPR植物中存在的与红景天相关的PAO的原位底物吸收模式。 FISH证实了在四家工厂中这些PAO的存在,它们分别占污泥群落的17%,9%,8%和7%。通过使用MAR-FISH技术,所有植物中与红景天相关的PAO表现出相似的厌氧底物吸收模式。它们能够在厌氧条件下吸收乙酸盐,天冬氨酸和谷氨酸,但棕榈酸酯显示负吸收。发现MAR阳性细胞中有很大一部分被乙酸,天冬氨酸或谷氨酸吸收,是Rhadocyclus相关的PAO。 DAPI和FISH的双重染色表明,这些PAO还以天门冬氨酸和谷氨酸为碳源,有氧地积累了多磷酸盐。除乙酸盐外,氨基酸的同化能力强烈表明与红景天有关的PAO具有多种生理功能,这可能使它们在EBPR活性污泥中占优势。

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