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Updated: May 17, 2026

Prospecting Microbial Strains for Bioremediation and Probiotics Development for Metaorganism Research and Preservation
Published on: October 31, 2019
A novel metronidazole-degrading bacterium Sphingopyxis sp. K5: isolation, characterization, and application potential
Shunyi Qian1, Huayi Wang1, Yuqian Liu1
1School of Life Sciences, Nantong University, Nantong 226019, China.
Abstract:
Metronidazole is a widely used nitroimidazole antibiotic in clinical practice. Following its widespread use, it enters the environment via medical wastewater, posing a potential risk of toxicity to ecosystems and living organisms. Microbial degradation is an efficient method of accurately eliminating target pollutants from the environment. Here, a metronidazole degrader, Sphingopyxis sp. K5, was isolated from medical wastewater sludge. Strain K5 could degrade 58.7 μ M metronidazole after 4 days of incubation with an initial OD600 of 1.5. The optimal degradation conditions were 35°C and pH 8.0, and the strain exhibited stable degradation efficiency on high metronidazole concentrations (100-500 μ M). The supplementation of nutrients such as LB or glucose can improve degradation efficiency by 152.0% and 129.0%, respectively. Design-Expert software was used for optimization of conditions such as temperature (33.7°C), pH (8.2), and cell density of inoculation (OD600 of 1.0). The degradation of metronidazole in soil and wastewater by strain K5 proved its potential for application. Strain K5 could eliminate > 95% of 5 and 25 ppm metronidazole in soil and wastewater within 5 and 10 days, respectively. Our results characterized the degradation efficiency of metronidazole by strain K5 and provided a theoretical basis for the bioremediation of metronidazole-contaminated environments.
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