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Bacterial diversity on different surfaces in urban freshwater

机译:城市淡水不同表面的细菌多样性

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Microbial loads in freshwater systems have important implications in biogeochemical cycling in urban environments. Immersed surfaces in freshwaters provide surfaces for bacterial attachment and growth. Microorganisms that adhere initially to these surfaces play a critical role in biofilm formation and sustenance. Currently, there is little understanding on the type of organisms that initially adhere to different surfaces in urban canals. In this study, water from an urban stormwater canal was employed to allow bacteria to attach to different surfaces in a flowcell apparatus and understand the differences and changes in bacterial community structure. Bacterial communities were highly diverse on different surfaces as indicated by Jaccard's indices of 0.14-0.56. Bacteria on aluminium were the most diverse and on Plexiglas the least. Bacterial communities were highly dynamic in the early attachment phase and it changed by 59% between 3 and 6 h on aluminium. Specificity of attachment to surfaces was observed for some bacteria. Judicious use of materials in urban aquatic environment would help mitigate microbial load in urban waters.
机译:淡水系统中的微生物负荷对城市环境中的生物地球化学循环具有重要意义。浸泡在淡水中的表面为细菌附着和生长提供了表面。最初附着在这些表面上的微生物在生物膜的形成和维持中起着至关重要的作用。目前,人们对最初附着在城市运河不同表面的生物的类型了解甚少。在这项研究中,利用城市雨水渠中的水使细菌附着在流通池设备的不同表面上,并了解细菌群落结构的差异和变化。雅克卡指数(Jaccard's index)为0.14-0.56,表明不同表面上的细菌群落高度不同。铝上的细菌种类最多,而有机玻璃上的细菌最少。在附着初期,细菌群落是高度动态的,在铝上3至6小时内细菌群落变化了59%。对于某些细菌,观察到了表面附着的特异性。在城市水生环境中明智地使用材料将有助于减轻城市水域中的微生物负荷。

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