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Changes in Microbial Community Structures under Reclaimed Water Replenishment Conditions

机译:再生水补充条件下微生物群落结构的变化

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摘要

Using reclaimed water as a resource for landscape water replenishment may alleviate the major problems of water resource shortages and water environment pollution. However, the safety of the reclaimed water and the risk of eutrophication caused by the reclaimed water replenishment are unclear to the public and to the research community. This study aimed to reveal the differences between natural water and reclaimed water and to discuss the rationality of reclaimed water replenishment from the perspective of microorganisms. The microbial community structures in natural water, reclaimed water and natural biofilms were analyzed, and the community succession was clarified along the ecological niches, water resources, fluidity and time using 16S rRNA gene amplicon sequencing. Primary biofilms without the original community were added to study the formation of microbial community structures under reclaimed water acclimation. The results showed that the difference caused by ecological niches was more than those caused by the fluidity of water and different water resources. No significant difference caused by the addition of reclaimed water was found in the microbial diversity and community structure. Based on the results of microbial analysis, reclaimed water replenishment is a feasible solution that can be used for supplying river water.
机译:使用再生水作为景观补水的资源可以缓解水资源短缺和水环境污染的主要问题。然而,公众和研究界还不清楚再生水的安全性和由再生水补充引起的富营养化的风险。这项研究旨在揭示天然水和再生水之间的差异,并从微生物的角度探讨再生水补充的合理性。分析了天然水,再生水和天然生物膜中的微生物群落结构,并利用16S rRNA基因扩增子序列沿生态位,水资源,流动性和时间阐明了群落演替。添加没有原始群落的主要生物膜来研究再生水适应条件下微生物群落结构的形成。结果表明,生态位所造成的差异大于水的流动性和不同水资源所造成的差异。在微生物多样性和群落结构上,未发现因添加再生水而引起的显着差异。根据微生物分析的结果,再生水补给是一种可行的解决方案,可用于供应河水。

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