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Microbial communities involved in enhanced biological phosphorus removal from wastewater - a model system in environmental biotechnology. (Special Issue: Energy biotechnology - Environmental biotechnology.)

机译:参与提高废水生物除磷能力的微生物群落-环境生物技术中的模型系统。 (特刊:能源生物技术-环境生物技术。)

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摘要

Enhanced biological phosphorus removal (EBPR) is one of the most advanced and complicated wastewater treatment processes applied today, and it is becoming increasingly popular worldwide as a sustainable way to remove and potentially reuse P. It is carried out by complex microbial communities consisting primarily of uncultured microorganisms. The EBPR process is a well-studied system with clearly defined boundaries which makes it very suitable as a model ecosystem in microbial ecology. Of particular importance are the transformations of C, N, and P, the solid-liquid separation properties and the functional and structural stability. A range of modern molecular methods has been used to study these communities in great detail including single cell microbiology, various-omics methods, flux analyses, and modeling making this one of the best studied microbial ecosystems so far. Recently, an EBPR core microbiome has been described and we present in this article some highlights and show how this complex microbial community can be used as model ecosystem in environmental biotechnology.
机译:增强型生物除磷(EBPR)是当今应用的最先进和最复杂的废水处理工艺之一,作为一种可持续的去除和潜在再利用磷的方法,其在世界范围内越来越流行。它由复杂的微生物群落组成,主要包括未经培养的微生物。 EBPR过程是一个经过充分研究的系统,具有明确定义的边界,因此非常适合作为微生物生态系统中的模型生态系统。尤其重要的是C,N和P的转化,固液分离特性以及功能和结构稳定性。一系列现代分子方法已被广泛用于研究这些群落,包括单细胞微生物学,多种组学方法,通量分析和建模,这使其成为迄今为止研究最深入的微生物生态系统之一。最近,已经描述了EBPR核心微生物组,我们在本文中介绍了一些重点内容,并显示了如何将这种复杂的微生物群落用作环境生物技术中的模型生态系统。

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