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首页> 外文期刊>FEMS Microbiology Ecology >Identity, abundance and ecophysiology of filamentous Chloroflexi species present in activated sludge treatment plants
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Identity, abundance and ecophysiology of filamentous Chloroflexi species present in activated sludge treatment plants

机译:活性污泥处理厂中存在的丝状绿屈挠菌种的身份,丰度和生态生理

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摘要

Filamentous Chloroflexi species are often present in activated sludge wastewater treatment plants in relatively low numbers, although bulking incidences caused by Chloroflexi filaments have been observed. A new species-specific gene probe for FISH was designed and using phylum-, subdivision-, morphotype 1851- and species-specific gene probes, the abundance of Chloroflexi filaments were monitored in samples from 126 industrial wastewater treatment plants from five European countries. Chloroflexi filaments were present in 50% of the samples, although in low quantities. In most treatment plants the filaments could only be identified with phylum or subdivision probes, indicating the presence of great undescribed biodiversity. The ecophysiology of various Chloroflexi filaments was investigated by a suite of in situ methods. The experiments revealed that Chloroflexi constituted a specialized group of filamentous bacteria only active under aerobic conditions consuming primarily carbohydrates. Many exo-enzymes were excreted, e.g. chitinase, glucuronidase and galactosidase, suggesting growth on complex polysaccharides. The surface of Chloroflexi filaments appeared to be hydrophilic compared to other filaments present. These results are generally supported by physiological studies of two new isolates. Based on the results obtained in this study, the potential role of filamentous Chloroflexi species in activated sludge is discussed.
机译:活性污泥废水处理厂中的丝状屈挠菌种通常数量相对较少,尽管已观察到由屈挠菌丝引起的膨松现象。设计了一种新的针对FISH的物种特异性基因探针,并使用门类,细分,形态型1851和物种特异性基因探针,对来自五个欧洲国家的126个工业废水处理厂的样品中的Chloroflexi细丝进行了监测。尽管数量很少,但屈挠挠丝仍存在于50%的样品中。在大多数处理厂中,只能通过门或细分探针来识别细丝,这表明存在大量未描述的生物多样性。通过一套原位方法研究了各种绿屈单丝的生理生态。实验表明,绿屈挠菌构成一组专门的丝状细菌,仅在需氧条件下活跃,主要消耗碳水化合物。许多外酶被排出体外,例如。几丁质酶,葡萄糖醛酸苷酶和半乳糖苷酶,表明在复杂的多糖上生长。与存在的其他细丝相比,Chloroflexi细丝的表面似乎是亲水的。这些结果通常得到两个新分离株的生理学研究的支持。基于本研究获得的结果,讨论了丝状绿屈挠菌种在活性污泥中的潜在作用。

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