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Cellular, particle and environmental parameters influencing attachment in surface waters: a review

机译:影响地表水附着的细胞,颗粒和环境参数:综述

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Effective modelling of the fate and transport of water-borne pathogens is needed to support federally required pollution-reduction plans, for water quality improvement planning, and to protect public health. Lack of understanding of microbial-particle interactions in water bodies has sometimes led to the assumption that bacteria move in surface waters not associated with suspended mineral and organic particles, despite a growing body of evidence suggesting otherwise. Limited information exists regarding the factors driving interactions between micro-organisms and particles in surface waters. This review discusses cellular, particle and environmental factors potentially influencing interactions and in-stream transport. Bacterial attachment in the aquatic environment can be influenced by properties of the cell such as genetic predisposition and physiological state, surface structures such as flagella and fimbriae, the hydrophobicity and electrostatic charge of the cell surface, and the presence of outer-membrane proteins and extracellular polymeric substances. The mechanisms and degree of attachment are also affected by characteristics of mineral and organic particles including the size, surface area, charge and hydrophobicity. Environmental conditions such as the solution chemistry and temperature are also known to play an important role. Just as the size and surface of chemical particles can be highly variable, bacterial attachment mechanisms are also diverse.
机译:需要有效地对水生病原体的命运和运输进行建模,以支持联邦政府要求的减少污染计划,水质改善计划并保护公众健康。尽管越来越多的证据表明并非如此,但对水体中微生物与颗粒间相互作用的了解有时导致人们认为细菌会在与悬浮的矿物质和有机颗粒无关的地表水中移动。关于驱动微生物与地表水中颗粒之间相互作用的因素的信息有限。这篇评论讨论了可能影响相互作用和河内运输的细胞,颗粒和环境因素。水生环境中的细菌附着可能受细胞特性(例如遗传易感性和生理状态,表面结构(如鞭毛和菌毛),细胞表面的疏水性和静电荷以及细胞外膜蛋白和细胞外存在)的影响聚合物质。附着的机理和程度也受矿物和有机颗粒特征的影响,包括大小,表面积,电荷和疏水性。众所周知,诸如溶液化学性质和温度之类的环境条件也起着重要作用。正如化学粒子的大小和表面可以高度变化一样,细菌的附着机制也多种多样。

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