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Antibiotics Resistance Genes Screening and Comparative Genomics Analysis of Commensal Escherichia coli Isolated from Poultry Farms between China and Sudan

机译:中国与苏丹家禽农场共生大肠埃希菌的抗生素抗性基因筛选及比较基因组学分析

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摘要

Escherichia coli (E. coli) strains, from the gut of animals and humans, harbor wide range of drug resistance genes. A comparative study is conducted on the intestinal E. coli from fecal samples of healthy chicken from China and Sudan in order to monitor the antimicrobial sensitivity pattern. A number of 250 E. coli isolates from chicken farms, including 120 from China and 130 from Sudan, were isolated and identified. All isolates were subjected to susceptibility tests against 10 antibiotics and the distribution of antibiotic resistant genes was confirmed by PCR amplification, involving genes such as ampC, tetA, pKD13, acrA, ermA, ermB, ermC, tetB, mphA, aadA14, aadA1, aac3-1, and aac3- III. Many isolates were found to exhibit resistance against more than one antibiotic. However, the Chinese isolates showed more antibiotics resistance and resistance genes compared to the Sudanese isolates. For better understanding of the multidrug resistance factors, we conducted whole genome analyses of E. coli D107 isolated from China, which revealed that the genome possesses multiple resistance genes including tetracycline, erythromycin, and kanamycin. Furthermore, E. coli D4 isolate from Sudan was more sensitive to antibiotics such as erythromycin, tetracycline, and gentamicin. After analysis by RAST and MAUVE, the two strains showed 89% average nucleotide identity. However, the genomes mostly differed at the number of antibiotics-related genes, as the genome of D107 revealed a considerable number of antibiotics resistance genes such as ermA and mphD which were found to be absent in D4 genome. These outcomes provided confirmation that the poultry farms environment in different countries (China and Sudan) may serve as a potential reservoir of antimicrobial resistance genes and also indicated the evolutionary differences of strains in terms of resistant genes expression.
机译:来自动物和人类肠道的大肠杆菌(E. coli)菌株具有广泛的耐药基因。对来自中国和苏丹的健康鸡粪便样本中的肠道大肠杆菌进行了比较研究,以监测其抗菌敏感性模式。分离并鉴定了来自养鸡场的许多250株大肠杆菌,包括来自中国的120株和来自苏丹的130株。所有分离株均接受了针对10种抗生素的敏感性测试,并通过PCR扩增确认了抗生素抗性基因的分布,涉及的基因包括ampC,tetA,pKD13,acrA,ermA,ermB,ermC,tetB,mphA,aadA14,aadA1,aac3 -1和aac3- III。发现许多分离株表现出对一种以上抗生素的抗性。但是,与苏丹分离株相比,中国分离株显示出更多的抗生素抗性和耐药基因。为了更好地了解多药耐药因素,我们对从中国分离的大肠杆菌D107进行了全基因组分析,结果表明该基因组具有多个耐药基因,包括四环素,红霉素和卡那霉素。此外,来自苏丹的大肠杆菌D4分离株对诸如红霉素,四环素和庆大霉素的抗生素更敏感。通过RAST和MAUVE分析后,这两个菌株显示出89%的平均核苷酸同一性。但是,由于D107的基因组揭示了相当多的抗生素抗性基因,例如ermA和mphD,而D4基因组中却没有这种基因组,因此它们在抗生素相关基因的数量上差异最大。这些结果证实了不同国家(中国和苏丹)的家禽养殖场环境可能是潜在的抗药性耐药基因库,也表明了菌株在抗性基因表达方面的进化差异。

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