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首页> 外文期刊>Environmental Science and Pollution Research >Bacterial viability and diversity in a landscape lake replenished with reclaimed water: a case study in Xi'an, China
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Bacterial viability and diversity in a landscape lake replenished with reclaimed water: a case study in Xi'an, China

机译:在景观湖中的细菌活力和多样性补充了再生水:中国西安的案例研究

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To understand the characteristics of bacterial viability and diversity in landscape waters replenished with reclaimed water, the typical landscape lake using reclaimed water was investigated in this study. Samples were collected from a reclaimed water inlet (P1), a reclaimed water distribution outlet (P2), and a landscape lake replenished by reclaimed water (P3). By means of measuring adenosine triphosphate (ATP), flow cytometry (FCM), and 16S rRNA gene high-throughput sequencing, the bacterial viability and diversity in reclaimed water distribution system and landscape lake were illustrated. The bacterial ATP contents at P1, P2, and P3 were 3.55 +/- 1.79 ng/L, 3.31 +/- 1.43 ng/L, and 18.97 +/- 6.39 mu g/L, and the intact bacterial cell concentrations were 5.91 +/- 0.52 x 10(4)cells/mL, 7.95 +/- 2.58 x 10(4)cells/mL, and 5.65 +/- 2.10 x 10(6)cells/mL, respectively. These results indicated a significant increase of bacterial viability in the landscape lake. The Shannon diversity index of 6.535, 7.05, and 6.886 at P1, P2, and P3, respectively, demonstrated no notable change of bacterial diversity from reclaimed water distribution system to landscape lake. However, the relative abundance ofPseudomonassp. at P3 was significantly higher than that at P1. These findings indicated that viable but non-culturable (VBNC) bacteria could be revived in the landscape lake. The bacterial viability during reclaimed water reuse should deserve special attention.
机译:为了了解景观水域中的细菌活力和多样性,并在再生水中补充了再生水,在本研究中研究了使用再生水的典型风景湖泊。从回收的进水口(P1)中收集样品,再生水分配出口(P2),并通过再生水补充的风景湖(P3)。通过测量腺苷三磷酸(ATP),流式细胞术(FCM)和16S RRNA基因高通量测序,阐述了再生水分配系统和景观湖泊中的细菌活力和多样性。 P1,P2和P3的细菌ATP含量为3.55 +/- 1.79 ng / L,3.31 +/- 1.43 ng / L和18.97 +/- 6.39 mu g / l,完整的细菌细胞浓度为5.91 + / - 0.52×10(4)个细胞/ ml,7.95 +/- 2.58×10(4)个细胞/ ml,分别为5.65 +/- 2.10×10(6)个细胞/ mL。这些结果表明山水湖中的细菌活力大幅增加。 P1,P2和P3分别为6.535,7.05和6.886的香农分集指数证明了从再生水分配系统到横向湖泊的细菌多样性的显着变化。但是,相对丰富的ofpseudomonassp。在P3显着高于P1。这些发现表明,可行但不培养的(VBNC)细菌可以在景观湖中恢复。再生水再利用期间的细菌活力应该应得特别注意。

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