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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Metagenomic analysis of microbiota structure evolution in phytoremediation of a swine lagoon wastewater
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Metagenomic analysis of microbiota structure evolution in phytoremediation of a swine lagoon wastewater

机译:猪泻湖废水修复中微生物群落结构演变的元基因组分析

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Pytoremediation was studied in this project to treat swine manure lagoon wastewater characteristic of high concentrations of organic carbon, ammonium (N) and phosphorus (P). The impacts of introducing exogenous microalgae Chlorella into the lagoon wastewater on the removal of major nutrients and the transformation of the native wastewater microbiota structure were explored under two phytoremediation modes (shake flask and CO2-air bubbling). The results showed that the inoculation of microalgae could significantly enhance N and P removal. Metagenomic analysis of the native microbiota composition in the wastewater affected by algae inoculation revealed that a substantial population of algicidal bacteria was developed in the shake flask system, while in the CO2-air bubbling system, a niche for more mutualistic bacteria was created, which benefited the maximal algal growth with the simultaneous optimal N and P removal. To our knowledge, this study presents, the first reported case of applying metagenomic approach to a phytoremediation system treating real swine lagoon wastewater. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在该项目中对植物修复进行了研究,以处理高浓度有机碳,铵(N)和磷(P)的猪粪泻湖废水。在两种植物修复模式(摇瓶法和二氧化碳鼓泡法)下,探讨了将外源微藻小球藻引入泻湖废水中对主要营养物质的去除和原生废水菌群结构转化的影响。结果表明,接种微藻可以显着提高氮和磷的去除率。对藻类接种影响的废水中天然微生物群组成的元基因组学分析显示,摇瓶系统中培养了大量的杀藻细菌,而在CO2空气鼓泡系统中,则创造了更多互生细菌的利基市场,这从中受益最大的藻类生长,同时具有最佳的氮和磷去除率。就我们所知,本研究提出了第一个报道的将宏基因组学方法应用于处理实际猪泻湖废水的植物修复系统的案例。 (C)2016 Elsevier Ltd.保留所有权利。

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