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分离、鉴定及降解性能分析耗氧四环素降解菌 Planococcus sp. 菌株 pw2。

Isolation, characterization and degradation performance of oxytetracycline degrading bacterium Planococcus sp. strain pw2.

机构信息

Department of Environmental Sciences, Bharathiar University, Coimbatore, Tamilnadu, 641046, India.

Department of Bioenvironmental Energy, College of Natural Resources and Life Science, Pusan National University, Miryang-Si, Gyeongsangnam-do, 50463, Republic of Korea.

出版信息

Arch Microbiol. 2022 Jan 7;204(2):122. doi: 10.1007/s00203-021-02732-6.

Abstract

Oxytetracycline (OTC), is a widely used veterinary antibiotic for treatment and prophylaxis in aquaculture. As an emerging pollutant, OTC in the environment exerts selective pressure on aquatic organisms causing proliferation of antibiotic resistant genes. In the present study, an OTC tolerant isolate labelled as pw2 was selected among the 11 OTC tolerant isolates, isolated from the aquaculture effluent, for investigating its OTC degrading potential. The cell morphology, biochemical characteristics, and 16S ribosomal RNA (rRNA) gene sequence of the isolated strain indicated that it belonged to the genus Planococcus. The OTC removal percentage was estimated through measuring its residual concentration in the culture medium with high performance liquid chromatography. The strain exhibited maximum removal efficiency of 90.62%, with initial OTC concentration of 10 µg/ml. The optimum degrading conditions were 35 °C and pH 7. The degradation rate of OTC with (biotic) and without strain pw2 (abiotic) was 3.253 and 1.149 mg/l/d, respectively. The half-life was recorded to be 2.13 d in the presence of strain pw2, in contrast to 6.03 days recorded without strain pw2. The total (biotic + abiotic) OTC degradation efficiency was 75.74, 83.93, 90.62, and 86.47% for the initial OTC concentrations of 1 to 25 µg/ml, respectively. Addition of carbon and nitrogen did not influence the OTC removal which indicates Planococcus sp. pw2 use OTC as sole energy source. Thus, Planococcus sp. pw2 plays a vital role in reducing the OTC concentration in the environment, offering a promising method for treatment of aquaculture effluent containing OTC.

摘要

土霉素(OTC)是一种广泛用于水产养殖治疗和预防的兽医抗生素。作为一种新兴污染物,环境中的 OTC 对水生生物施加选择性压力,导致抗生素耐药基因的增殖。在本研究中,从水产养殖废水中分离出 11 株 OTC 耐受菌株,从中选择一株耐受菌株 pw2 用于研究其 OTC 降解潜力。该分离菌株的细胞形态、生化特性和 16S 核糖体 RNA(rRNA)基因序列表明,它属于 Planococcus 属。通过高效液相色谱法测量培养基中残留的 OTC 浓度来估计 OTC 的去除率。该菌株在初始 OTC 浓度为 10μg/ml 时表现出最大去除效率 90.62%。最佳降解条件为 35°C 和 pH7。有(生物)和没有菌株 pw2(非生物)存在时,OTC 的降解速率分别为 3.253 和 1.149mg/l/d。在有菌株 pw2 的情况下,OTC 的半衰期记录为 2.13d,而在没有菌株 pw2 的情况下记录为 6.03d。当初始 OTC 浓度分别为 1 至 25μg/ml 时,总(生物+非生物)OTC 降解效率分别为 75.74%、83.93%、90.62%和 86.47%。添加碳源和氮源不会影响 OTC 的去除,这表明 Planococcus sp. pw2 将 OTC 用作唯一的能源。因此,Planococcus sp. pw2 在降低环境中 OTC 浓度方面发挥着重要作用,为处理含有 OTC 的水产养殖废水提供了一种有前途的方法。

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