Xia Yun, Kong Yunhong, Thomsen Trine Rolighed, Halkjaer Nielsen Per
Department of Biotechnology, Chemistry, and Environmental Engineering, Aalborg University, Sohngaardsholmsvej 57, DK-9000 Aalborg, Denmark.
Appl Environ Microbiol. 2008 Apr;74(7):2229-38. doi: 10.1128/AEM.02502-07. Epub 2008 Feb 8.
The identity and ecophysiology of a group of uncultured protein-hydrolyzing epiphytic rods attached to filamentous bacteria in activated sludge from nutrient removal plants were investigated by using the full-cycle rRNA approach combined with microautoradiography and histochemical staining. The epiphytic group consists of three closely related clusters, each containing 11 to 16 clones. The closest related cultured isolate is the type strain Haliscomenobacter hydrossis (ATCC 27775) (<87% similarity) in the family Saprospiraceae of the phylum Bacteroidetes. Oligonucleotide probes at different hierarchical levels were designed for each cluster and used for ecophysiological studies. All three clusters behaved similarly in their physiology and were specialized in protein hydrolysis and used amino acids as energy and carbon sources. They were not involved in denitrification. No storage of polyphosphate and polyhydroxyalkanoates was found. They all colonized probe-defined filamentous bacteria belonging to the phyla Chloroflexi, Proteobacteria, and candidate phylum TM7, with the exception of cluster 1, which did not colonize TM7 filaments. The three epiphytic clusters were all widespread in domestic and industrial wastewater treatment plants with or without biological phosphorus removal, constituting, in total, up to 9% of the bacterial biovolume. A new genus, "Candidatus Epiflobacter," is proposed for this epiphytic group in activated-sludge treatment plants, where it presumably plays an important role in protein degradation.
采用全周期rRNA方法结合微放射自显影和组织化学染色,研究了营养去除厂活性污泥中附着在丝状细菌上的一组未培养的蛋白水解附生杆菌的身份和生态生理学。附生菌群由三个密切相关的簇组成,每个簇包含11至16个克隆。最接近的相关培养菌株是拟杆菌门腐螺旋菌科的模式菌株水生嗜泥杆菌(ATCC 27775)(相似度<87%)。针对每个簇设计了不同层次水平的寡核苷酸探针,并用于生态生理学研究。所有三个簇在生理行为上相似,专门进行蛋白水解,并以氨基酸作为能量和碳源。它们不参与反硝化作用。未发现聚磷酸盐和聚羟基烷酸酯的储存。除了簇1不附着在TM7丝状菌上外,它们都附着在属于绿弯菌门、变形菌门和候选门TM7的探针定义的丝状细菌上。这三个附生簇在有或没有生物除磷的生活和工业废水处理厂中都广泛存在,总共占细菌生物体积的9%。在活性污泥处理厂中,为这个附生菌群提出了一个新属“候选附生杆菌属”,它可能在蛋白质降解中起重要作用。