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Dynamic changes in the population structure of Escherichia coli in the Yeongsan River basin of South Korea

机译:韩国云杉流域大肠杆菌人口结构的动态变化

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Although Escherichia coli has been used as an indicator to examine fecal contamination of aquatic environment, it also has been reported to become naturalized to secondary habitats, including soil, water and beach sand. A total of 2880 E. coli isolates obtained from surface water and sediment samples from the Yeongsan River in 2013 were genotyped by using the horizontal fluorophore-enhanced rep-PCR DNA fingerprinting technique. Although different E. coli genotypic groups were observed between surface water and sediments in the dry season, they were mingled and undifferentiated from each other in the rainy season. This indicates that there are frequent sediment resuspension events in the river basin. Moreover, the genotypic composition of the E. coli population in the Yeongsan River basin changes over months and years, implying that genotypic structure of E. coli populations dynamically fluctuates in the river environment. Consequently, our data suggests that the use of E. coli libraries for fecal source tracking needs to be reassessed to account for the changing structure of riverine E. coli populations.
机译:虽然大肠杆菌被用作检查水生环境的粪便污染的指标,但还据报道,归于次生栖息地,包括土壤,水和海滩沙子。通过使用水平荧光团增强型REP-PCR DNA指纹识别技术,2013年从地表水和来自云杉河河河沉积物样品中获得的2880大肠杆菌分离株。虽然在干燥季节的地表水和沉积物之间观察到不同的大肠杆菌基因族,但它们在雨季中彼此混合和未分化。这表明河流流域频繁沉积沉积物。此外,云南河流域大肠杆菌种群的基因型组成在几个月多的时间内变化,暗示大肠杆菌种群的基因型结构在河流环境中动态波动。因此,我们的数据表明,需要重新评估用于粪便源跟踪的大肠杆菌图书馆,以考虑河流大肠杆菌种群的变化结构。

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