首页> 外文期刊>Archaea: an international microbiological journal >Variation of Bacterial and Archaeal Community Structures in a Full-Scale Constructed Wetlands for Wastewater Treatment
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Variation of Bacterial and Archaeal Community Structures in a Full-Scale Constructed Wetlands for Wastewater Treatment

机译:用于废水处理的全规模构造湿地中细菌和古群落结构的变异

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摘要

Microorganisms play important roles in the reduction of organic and inorganic pollutants in constructed wetlands used for the treatment of wastewater. However, the diversity and structure of microbial community in constructed wetland system remain poorly known. In this study, the Illumina MiSeq Sequencing of 16S rDNA was used to analyze the bacterial and archaeal microbial community structures of soil and water in a free surface flow constructed wetland, and the differences of bacterial communities and archaeal compositions between soil and water were compared. The results showed that the Proteobacteria were the dominant bacteria, making up 35.38%~48.66% relative abundance. Euryarchaeotic were the absolute dominant archaea in the influent sample with the relative abundance of 93.29%, while Thaumarchaeota showed dominance in the other three samples, making up 50.58%~75.70%. The relative abundances of different species showed great changes in bacteria and archaea, and the number of dominant species in bacteria was much higher than that in archaea. Compared to archaea, the community compositions of bacteria were more abundant and the changes were more significant. Meanwhile, bacteria and archaea had large differences in compositions between water and soil. The microbial richness in water was significantly higher than that in soil. Simultaneously, soil had a significant enrichment effect on some microbial flora.
机译:微生物在用于治疗废水的构造湿地减少有机和无机污染物中起重要作用。然而,构造湿地系统中微生物群落的多样性和结构仍然众所周知。在这项研究中,使用16S rDNA的Illumina MiSeq测序分析了在自由表面流动构造的湿地中的土壤和水的细菌和古群微生物群落结构,并比较了土壤和水之间的细菌群落和古代组成的差异。结果表明,植物间体细菌是显性细菌,相对丰度占35.38%〜48.66%。 EuryArcheootic是受影响力的绝对占优势古亚茶,相对丰度为93.29%,而Thaumarchaeota在其他三种样品中显示出优势,占50.58%〜75.70%。不同物种的相对丰度表现出细菌和古痤疮的巨大变化,细菌中的显性种类的数量远高于古代群岛。与archaea相比,细菌的群落组成更丰富,变化更为显着。与此同时,细菌和古亚妥含有水土和土壤之间的组成差异很大。水中的微生物丰富度明显高于土壤中的富含性。同时,土壤对一些微生物菌群具有显着的富集作用。

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