Isolation, identification, molecular typing, and drug resistance of Escherichia coli from infected cattle and sheep in Xinjiang, China

新疆感染牛羊大肠杆菌的分离鉴定、分子分型及耐药性

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作者:Xiaoxiao Gu, Xue Ma, Qin Wu, Qiaoxiaoci Tao, Yingjin Chai, Xia Zhou, Mengli Han, Jie Li, Xin Huang, Tongzhong Wu, Xingxing Zhang, Fagang Zhong, Yiheng Cao, Liyuan Zhang

Background

Escherichia coli infections are common in Xinjiang, a major region of cattle and sheep breeding in China. Therefore, strategies are required to control E. coli. The

Conclusion

These characteristics complicate the prevention and treatment of E. coli-related diseases in Xinjiang.

Methods

In this study, 116 tissue samples were collected from the organs of cattle and sheep that were suspected of having E. coli infections between 2015 and 2019. Bacteria in the samples were identified using a biochemical identification system and amplification of 16S rRNA, and the phylogenetic groupings of E. coli isolates were determined by multiplex polymerase chain reactions. In addition, PCR detection and analysis of virulence factors, antibiotic resistance genes, and drug-resistant phenotypes of E. coli isolates were performed.

Results

A total of 116 pathogenic E. coli strains belonging to seven phylogenetic groups were isolated, with the majority of isolates in groups A and B1. Among the virulence genes, curli-encoding crl had the highest detection rate of 97.4%, followed by hemolysin-encoding hlyE with the detection rate of 94.82%. Antimicrobial susceptibility test results indicated that the isolates had the highest rates of resistance against streptomycin (81.9%).

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