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In-depth assessment of microbial communities in the full-scale vertical flow treatment wetlands fed with raw domestic wastewater

机译:深入评估全级垂直流动处理湿地饲喂饲喂原料污水的湿地

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A multiphase study was proposed to examine microbial communities linked to the nitrogen cycle in the first stage of four full-scale French vertical flow treatment systems. To this end, denaturing gradient gel electrophoresis (DGGE) was performed for structural assessment and quantitative PCR (qPCR) to enumerate the abundance of ammonia-oxidizing (AOB). 16S rRNA sequencing was used to assess the taxonomic profile followed by putative assessment of functional genes. The samples were collected under different conditions, such as operational time (presence/absence of sludge layer on the surface of the filters), season (winter and summer), sampling depth (0, 15 and 30 cm) and operation cycle (rest and feed periods). A structural disparity was noted in the upper layers, whereas higher similarity at 30 cm was observed highlighting the effect of organic matter on bacterial diversity. The 7th rest day was highlighted by an apparent decline in the microbial community abundance. Additionally, qPCR indicated that the largest amount of AOB was found at 30 cm depth and during the feeding period. From the taxonomic profile, Mycobacterium, Acinetobacter, Flavobacterium, and Nitrospira were the most abundant genre found in all systems. The functional prediction results showed predicted genes linked to the denitrification process. The results suggested that operating time and season were responsible for the pattern of the microbial community behavior. This study allowed us to further understand the bacterial dynamics and to advance the idea of design modifications made in the first stage of the classical French system to improve nitrogen removal are promising.
机译:提出了多相研究,以检查四个全规模法式垂直流动处理系统的第一阶段与氮循环相关的微生物社区。为此,对结构评估和定量PCR(QPCR)进行变性梯度凝胶电泳(DGGE)以枚举氨氧化(AOB)的丰度。 16S RRNA测序用于评估分类程序分类,然后进行函数基因进行调整。在不同条件下收集样品,例如操作时间(过滤器表面上的污泥层的存在/不存在),季节(冬季和夏季),采样深度(0,15和30cm)和操作周期(休息和饲料期)。在上层中注意到结构差异,而观察到突出有机质对细菌多样性的效果更高的30厘米的相似性。第7天休息日被微生物群落丰富的明显下降突出。另外,QPCR表示,在30cm深度和进给时段期间发现最大量的AOB。从分类型概况,分枝杆菌,雌细胞,黄杆菌和Nitrospira是所有系统中发现的最丰富的类型。功能预测结果显示出与脱硝过程相关的预测基因。结果表明,经营时间和季节对微生物群落行为的模式负责。本研究允许我们进一步了解细菌动力学,并推进在经典法国系统的第一阶段进行设计修改的设计,以改善氮气去除是有前途的。

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