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A new coupon design for simultaneous analysis of in situ microbial biofilm formation and community structure in drinking water distribution systems

机译:一种用于同时分析饮用水分配系统中原位微生物生物膜形成和群落结构的新型样板设计

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摘要

This study presents a new coupon sampling device that can be inserted directly into the pipes within water distribution systems (WDS), maintaining representative near wall pipe flow conditions and enabling simultaneous microscopy and DNA-based analysis of biofilms formed in situ. To evaluate this sampling device, fluorescent in situ hybridization (FISH) and denaturing gradient gel electrophoresis (DGGE) analyses were used to investigate changes in biofilms on replicate coupons within a non-sterile pilot-scale WDS. FISH analysis demonstrated increases in bacterial biofilm coverage of the coupon surface over time, while the DGGE analysis showed the development of increasingly complex biofilm communities, with time-specific clustering of these communities. This coupon design offers improvements over existing biofilm sampling devices in that it enables simultaneous quantitative and qualitative compositional characterization of biofilm assemblages formed within a WDS, while importantly maintaining fully representative near wall pipe flow conditions. Hence, it provides a practical approach that can be used to capture the interactions between biofilm formation and changing abiotic conditions, boundary shear stress, and turbulent driven exchange within WDS.
机译:这项研究提出了一种新的试样取样设备,可以将其直接插入水分配系统(WDS)中的管道中,以维持近壁管道的典型流动状况,并能够同时对原位形成的生物膜进行显微镜和基于DNA的分析。为了评估该采样设备,使用了荧光原位杂交(FISH)和变性梯度凝胶电泳(DGGE)分析来研究非无菌中试规模WDS内重复样片上生物膜的变化。 FISH分析表明,随着时间的推移,试样表面细菌生物膜的覆盖率会增加,而DGGE分析表明,生物膜群落的发展日趋复杂,这些群落具有特定的时间集群。这种试样设计提供了对现有生物膜采样设备的改进,因为它能够同时对WDS内形成的生物膜组件进行定量和定性组成表征,同时重要地保持了完全代表性的近壁管流动条件。因此,它提供了一种实用的方法,可用于捕获生物膜形成与变化的非生物条件,边界剪切应力以及WDS中湍流驱动的交换之间的相互作用。

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