首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Impacting Microbial Communities and Absorbing Pollutants by Canna Indica and Cyperus Alternifolius in a Full-Scale Constructed Wetland System
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Impacting Microbial Communities and Absorbing Pollutants by Canna Indica and Cyperus Alternifolius in a Full-Scale Constructed Wetland System

机译:Canna Indica和Cyperus Alternifolius在一个完整的人工湿地系统中影响微生物群落并吸收污染物。

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摘要

Wetland plants that cover the wetlands play an important role in reducing pollutants. The aim of this study was to investigate the effect of two plant species on microbial communities and nitrogen-removal genes and to evaluate the contributions of absorbing pollutants by Canna indica (CI) and Cyperus alternifolius (CA) to the removal performance in both a vertical subsurface flow constructed wetland and a horizontal subsurface flow constructed wetland, which were part of a full-scale hybrid constructed wetland system. The microbial assemblages were determined using 16S rRNA high-throughput sequencing. Results showed that the presence of CI and CA positively affected microbial abundance and community in general and which was positive for the total bacteria and ammonia nitrogen removal in the CWs. The higher abundance of Nitrospirae appeared in the non-rhizosphere sediment (NRS) than that in the rhizosphere sediment (RS). More denitrification genes were found in NRS than in RS. The copy numbers of narG, nirS and nosZ genes for CA were higher than those for CI. Wetland plant species can significantly (P < 0.05) affect the distribution of microbial communities in RS. Plant selection is important to promote the development of microbial communities with a more active and diverse catabolic capability and the contribution of plant absorption to the overall removal rate of wetland system can be neglected.
机译:覆盖湿地的湿地植物在减少污染物方面起着重要作用。这项研究的目的是研究两种植物物种对微生物群落和氮去除基因的影响,并评估印度anna(CI)和互花米草(CA)对吸收污染物的吸收在垂直方向上的去除性能。地下流动人工湿地和水平地下流动人工湿地,它们是大规模混合人工湿地系统的一部分。使用16S rRNA高通量测序确定微生物组合。结果表明,CI和CA的存在总体上对微生物的丰度和群落产生积极影响,并且对连续水处理厂的总细菌和氨氮去除呈阳性。非根际沉积物(NRS)中硝化螺旋菌的丰度高于根际沉积物(RS)。在NRS中发现的反硝化基因多于RS。 CA的narG,nirS和nosZ基因的拷贝数高于CI的拷贝数。湿地植物物种可以显着(P <0.05)影响RS中微生物群落的分布。植物的选择对于促进具有更活跃和多样化分解代谢能力的微生物群落的发展很重要,并且可以忽略植物吸收对湿地系统总体清除率的贡献。

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