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首页> 外文期刊>Water Research >Application of real-time PCR to determination of combined effect of antibiotics on Bacteria, Methanogenic Archaea, Archaea in anaerobic sequencing batch reactors
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Application of real-time PCR to determination of combined effect of antibiotics on Bacteria, Methanogenic Archaea, Archaea in anaerobic sequencing batch reactors

机译:实时PCR在厌氧测序间歇反应器中测定抗生素对细菌,产甲烷古生菌和古生菌联合作用的应用。

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摘要

This study evaluated the long-term effects of erythromycin-tetracycline-sulfamethoxazole (ETS) and sulfamethoxazole-tetracycline (ST) antibiotic combinations on the microbial community and examined the ways in which these antimicrobials impact the performance of anaerobic reactors. Quantitative real-time PCR was used to determine the effect that different antibiotic combinations had on the total and active Bacteria, Archae and Methanogenic Archae. Three primer sets that targeted metabolic genes encoding formylterahydrofolate synthetase, methyl-coenzyme M reductase and acetyl-coA synthetase were also used to determine the inhibition level on the mRNA expression of the homoacetogens, methanogens and specifically acetoclastic methanogens, respectively. These microorganisms play a vital role in the anaerobic degradation of organic waste and targeting these gene expressions offers operators or someone at a treatment plant the potential to control and the improve the anaerobic system.
机译:这项研究评估了红霉素-四环素-磺胺甲恶唑(ETS)和磺胺甲恶唑-四环素(ST)抗生素组合对微生物群落的长期影响,并研究了这些抗微生物剂影响厌氧反应器性能的方式。实时定量PCR用于确定不同抗生素组合对总细菌和活性细菌,古细菌和产甲烷细菌的影响。还使用了针对编码甲酰四氢叶酸合成酶,甲基辅酶M还原酶和乙酰辅酶A合成酶的代谢基因的三个引物组来分别确定对均乙原,产甲烷原和特别是对破胶性产甲烷原的mRNA表达的抑制水平。这些微生物在有机废物的厌氧降解中起着至关重要的作用,针对这些基因表达,为操作员或处理厂的某人提供了控制和改善厌氧系统的潜力。

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