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首页> 外文期刊>International Biodeterioration & Biodegradation >Degradation of furazolidone by bacteria Acinetobacter calcoaceticus T32, Pseudomonas putida SP1 and Proteus mirabilis V7
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Degradation of furazolidone by bacteria Acinetobacter calcoaceticus T32, Pseudomonas putida SP1 and Proteus mirabilis V7

机译:细菌乙酸不动杆菌T32,恶臭假单胞菌SP1和奇异变形杆菌V7降解呋喃唑酮

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摘要

Furazolidone (FZD) has been widely used as an antibacterial and antiprotozoal feed additive for poultry, cattle and farmed fish. Since FZD has been shown to have mutagenic, genotoxic and potentially carcinogenic properties when tested in a variety of systems, there is an increasing need to find a way to remove FZD from contaminated environments. In this report, three bacterial strains Acinetobacter calcoaceticus 132, Pseudomonas putida SP1 and Proteus mirabilis V7 capable of degrading FZD effectively were isolated, identified and characterized. The reduced FZD. concentration after degradation was determined by HPLC. After bacterial cells were grown in the media containing 5 mg l(-1) FZD for 5 days, almost all FZD was degraded by A. calcoaceticus T32, and more than 50% of FZD was degraded by P. putida SP1 and P. mirabilis V7, respectively. Bacterial GST activity of A. calcoaceticus T32, P. putida SP1 and P. mirabilis V7 was determined to be influenced by different FZD concentrations. Cytotoxicity analysis showed that FZD was degraded to the metabolites with far less cytotoxicity compared to FZD. The inoculation of bacterial strains A. calcoaceticus T32, P. putida SP1 and P. mirabilis V7 into FZD-contained media resulted in a higher degradation efficiency than natural degradation, which indicated the potential application of these strains in treatment of FZD-polluted freshwater or seawater environments
机译:呋喃唑酮(FZD)已被广泛用作家禽,牛和养殖鱼类的抗菌和抗原生动物饲料添加剂。由于在各种系统中进行测试时,FZD已显示具有诱变,遗传毒性和潜在的致癌特性,因此越来越需要找到一种从受污染的环境中去除FZD的方法。在此报告中,分离,鉴定和鉴定了三种能够有效降解FZD的细菌菌株钙乙酸不动杆菌132,恶臭假单胞菌SP1和奇异变形杆菌V7。降低的FZD。降解后的浓度通过HPLC测定。细菌细胞在含有5 mg l(-1)FZD的培养基中生长5天后,几乎所有FZD都被钙乙酸曲霉T32降解,超过50%的FZD被恶臭假单胞菌SP1和奇异假单胞菌降解。 V7,分别。确定了钙乙酸曲霉T32,恶臭假单胞菌SP1和奇异假单胞菌V7的细菌GST活性受不同FZD浓度的影响。细胞毒性分析表明,与FZD相比,FZD降解为代谢产物的细胞毒性要小得多。将细菌菌株A. calcoaceticus T32,恶臭假单胞菌SP1和奇异假单胞菌V7接种到含有FZD的培养基中,其降解效率要高于自然降解,这表明这些菌株在处理FZD污染的淡水或水中的潜在应用。海水环境

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