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首页> 外文期刊>BioTechnologia >Detection and characteristics of sulfamethoxazole-resistant bacteria in constructed wetlands treating sulfamethoxazole-rich wastewater
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Detection and characteristics of sulfamethoxazole-resistant bacteria in constructed wetlands treating sulfamethoxazole-rich wastewater

机译:处理富磺胺甲基异戊二烯废水的人工湿地中耐磺胺甲恶唑的细菌的检测和特征

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摘要

Constructed wetlands (CW) are one of the biological wastewater treatment systems that reflect the natural processes occurring in swamps. Constructed wetlands use microbiological and physico-chemical processes as well as plant metabolism in order to purify wastewater. In such treatment systems, the role of microorganisms is crucial. In this experiment, synthetic communal wastewater containing sulfamethoxazole (SMX; chemotherapeutic) at a concentration of 5 mg/l was applied in the CW systems, both unplanted and planted with Phalaris arundinacea , also known as reed canary grass. Fourteen Gram-positive SMX-resistant bacteria strains were isolated from the CW column fillings and the plant rhizosphere. All of these were identified as representatives of Bacillus sp. based on 16S rRNA sequencing. Despite this molecular identification, the isolates differed significantly in their biochemical features. All 14 isolates presented resistance toward sulfamethoxazole and all 14 strains possessed a sul1 gene, while only 4 gave positive results in sul2 and 3 in sul3 PCR tests. None of the isolated strains possessed all three sul genes. A PCR-DGGE based analysis of the presence of SMX-resistant bacteria in the CW community was undertaken. It was found that none of the isolates represented the dominant genotype in the bacterial community.
机译:人工湿地(CW)是生物废水处理系统之一,可反映沼泽中发生的自然过程。人工湿地利用微生物和物理化学过程以及植物新陈代谢来净化废水。在这样的处理系统中,微生物的作用至关重要。在该实验中,将浓度为5 mg / l的含有磺胺甲恶唑(SMX;化疗剂)的合成公共废水应用于CW系统中,该系统既未种植也种植了Ph草,也称为芦苇金丝雀草。从连续波色谱柱填充物和植物根际中分离出十四株革兰氏阳性的耐SMX细菌菌株。所有这些被鉴定为芽孢杆菌属的代表。基于16S rRNA测序。尽管进行了分子鉴定,但分离物的生化特征仍存在显着差异。所有14个菌株均对磺胺甲恶唑具有抗性,所有14个菌株均具有sul1基因,而只有4个菌株在sul2中呈阳性,在sul3 PCR测试中呈3个。分离的菌株均不具有全部三个sul基因。进行了基于PCR-DGGE的CW社区中SMX抗性细菌的存在分析。发现在细菌群落中没有分离株代表显性基因型。

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