首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Response of denitrifying community, denitrification genes and antibiotic resistance genes to oxytetracycline stress in polycaprolactone supported solid-phase denitrification reactor
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Response of denitrifying community, denitrification genes and antibiotic resistance genes to oxytetracycline stress in polycaprolactone supported solid-phase denitrification reactor

机译:将群落,脱氮基因和抗生素抗性基因在聚己内酯负载的固相脱氮反应器中对氧化胞胞菌胁迫的反应

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摘要

The coexistence of nitrate and antibiotics in wastewater is a common problem. The study aimed to explore the response of denitrifying community, denitrification genes and antibiotic resistance genes (ARGs) to oxytetracycline (OTC) stress in polycaprolactone (PCL) supported solid-phase denitrification (SPD) reactors. Complete nitrate reduction (greater than99%) was achieved in SPD system with OTC stress of 0, 0.05, 0.25 and 1 mg L-1 during three-month operation, while it significantly declined by about 5% at a further increased OTC level of 5 mg L-1. The efficient denitrification strongly related with a rich diversity of denitrifiers, while the abundances of which dramatically reduced as the OTC concentration reached >= 0.25 mg L-1, which caused significant decline of denitrification genes, especially for narH, narJ, narI nirD, nosZ, and norB. Tetracycline resistance genes were a major type of promoted ARGs by different OTC stress, mainly related with the increase of tet36, tetG, tetA, tetM and tetC.
机译:废水中硝酸盐和抗生素的共存是一个常见问题。该研究旨在探讨将群落,脱氮基因和抗生素抗性基因(Args)在多己内酯(PCL)中负载的固相反硝化(SPD)反应器中的氧赤素(OTC)胁迫的响应。在三个月运行期间,在SPD系统中达到完全硝酸盐减少(大于99%)在SPD系统中实现0,0.05,0.25和1mg L-1的,同时它在5的进一步增加的OTC水平下显着下降了大约5% Mg L-1。高效的脱氮与富含脱氮剂的多样性相关,而随着OTC浓度达到的大量减少> = 0.25mg L-1,这导致了脱硝基基因的显着下降,尤其是纳尔,奈赫,纳里·尼尔,NoSz和norb。四环素抗性基因是通过不同的OTC应激的主要类型的促进args,主要原因是TET36,TETG,TETA,TETM和TETC的增加。

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