Antibiotic resistance and siderophores production by clinical Escherichia coli strains.

Q3 Agricultural and Biological Sciences BioTechnologia Pub Date : 2022-01-01 DOI:10.5114/bta.2022.116211
Mohamed T Khazaal, Hoda H El-Hendawy, Mona I Mabrouk, Ahmed H I Faraag, Marwa R Bakkar
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Abstract

The phenomenon of antibiotic resistance has dramatically increased in the last few decades, especially in enterobacterial pathogens. Different strains of Escherichia coli have been reported to produce a variety of structurally different siderophores. In the present study, 32 E. coli strains were collected from different clinical settings in Cairo, Egypt and subjected to the antibiotic susceptibility test by using 19 antibiotics belonging to 7 classes of chemical groups. The results indicated that 31 strains could be considered as extensively drug-resistant and only one strain as pan drug-resistant. Siderophores production by all the tested E. coli strains was determined qualitatively and quantitatively. Two E. coli strains coded 21 and 49 were found to be the most potent siderophores producers, with 79.9 and 46.62%, respectively. Bacterial colonies with cured plasmids derived from strain 49 showed susceptibility to all the tested antibiotics. Furthermore, E. coli DH5α cells transformed with the plasmid isolated from E. coli strain 21 or E. coli strain 49 were found to be susceptible to ansamycins, quinolones, and sulfonamide groups of antibiotics. In contrast, both plasmid-cured and plasmid-transformed strains did not produce siderophores, indicating that the genes responsible for siderophores production were located on plasmids and regulated by genes located on the chromosome. On the basis of the obtained results, it could be concluded that there is a positive correlation between antibiotic resistance, especially to quinolones and sulfonamide groups, and siderophores production by E. coli strains used in this study.

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临床大肠杆菌菌株的抗生素耐药性和铁载体的产生。
在过去的几十年里,抗生素耐药性的现象急剧增加,特别是在肠杆菌病原体中。据报道,不同的大肠杆菌菌株可以产生多种结构不同的铁载体。本研究从埃及开罗不同临床环境采集32株大肠杆菌,采用7类化学群19种抗生素进行药敏试验。结果表明,31株可被认为是广泛耐药,1株可被认为是泛耐药。对所有菌株的产铁载体量进行了定性和定量测定。编码为21和49的2株大肠杆菌是最有效的产铁载体,分别为79.9和46.62%。菌株49的治愈质粒菌落对所有抗生素均有敏感性。此外,用大肠杆菌菌株21或菌株49分离的质粒转化的大肠杆菌DH5α细胞对安霉素类、喹诺酮类和磺胺类抗生素敏感。相比之下,质粒固化菌株和质粒转化菌株都不产生铁载体,这表明负责产生铁载体的基因位于质粒上,并受到位于染色体上的基因的调控。根据所获得的结果,可以得出结论,抗生素耐药性,特别是对喹诺酮类药物和磺胺类药物的耐药性与本研究中使用的大肠杆菌菌株的铁载体产量呈正相关。
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来源期刊
BioTechnologia
BioTechnologia Agricultural and Biological Sciences-Plant Science
CiteScore
1.60
自引率
0.00%
发文量
8
审稿时长
8 weeks
期刊介绍: BIOTECHNOLOGIA – a high standard, peer-reviewed, quarterly magazine, providing a medium for the rapid publication of research reports and review articles on novel and innovative aspects of biotechnology, computational biology and bionanotechnology.
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