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From farm-scale to lab-scale: The characterization of engineered irrigation water distribution system biofilm models using an artificial freshwater source

机译:从农场规模到实验室规模:使用人工淡水源表征工程灌溉用水分配系统生物膜模型

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Contaminants in freshwater environments, as well as the associated negative impacts on agricultural produce, have emerged as a critical theme of the water-energy-food nexus affecting food safely and irrigation management. Agricultural produce exposed to irrigation with questionable freshwater can internalize and concentrate pollutants. However, the potential risks posed by the ubiquitous presence of biofilms within irrigation water distribution systems (IWDS) remains overlooked, even though such biofilms may harbor and spread pathogenic, chemical, and other environmental pollutants. Our limited knowledge about the role and functional attributes of IWDS biofilms can be blamed mostly to experimental challenges encountered during attempted studies of these biofilms in their natural environments. Hence, a laboratory-based experimental system designed to simulate a freshwater environment was combined with a biofilm reactor capable of recreating the piping environments in water distribution systems. This experimental system was then tested to assess the robustness and repeatability of experimental early-stage biofilms with respect to physical structure and microbial community, using state-of-the-art confocal microscopy and next-generation sequencing, respectively. The results demonstrated the suitability of this laboratory-based experimental system for studying the impacts of selected pollutants on irrigation water distribution systems. (C) 2019 Elsevier B.V. All rights reserved.
机译:淡水环境中的污染物以及对农产品的相关负面影响已成为水能与食物之间的关系的关键主题,其关系到粮食安全和灌溉管理。暴露于可疑淡水灌溉中的农产品可以使污染物内化和浓缩。但是,灌溉水分配系统(IWDS)中普遍存在生物膜构成的潜在风险仍被忽略,即使此类生物膜可能藏匿并传播病原性,化学性和其他环境污染物。我们对IWDS生物膜的作用和功能属性的了解有限,主要归因于在自然环境中尝试研究这些生物膜时遇到的实验挑战。因此,设计用于模拟淡水环境的基于实验室的实验系统与能够在配水系统中重建管道环境的生物膜反应器相结合。然后分别使用最先进的共聚焦显微镜和下一代测序技术对该实验系统进行测试,以评估实验早期生物膜相对于物理结构和微生物群落的稳健性和可重复性。结果表明,这种基于实验室的实验系统适用于研究所选污染物对灌溉用水分配系统的影响。 (C)2019 Elsevier B.V.保留所有权利。

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