首页> 外文期刊>Applied Microbiology >Housefly (Musca domestica) and Blow Fly (Protophormia terraenovae) as Vectors of Bacteria Carrying Colistin Resistance Genes
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Housefly (Musca domestica) and Blow Fly (Protophormia terraenovae) as Vectors of Bacteria Carrying Colistin Resistance Genes

机译:家蝇(蝇蝇)和蝇蝇(Protophormia terraenovae)作为携带colistin抗性基因的细菌的载体

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Flies have the capacity to transfer pathogens between different environments, acting as one of the most important vectors of human diseases worldwide. In this study, we trapped flies on a university campus and tested them for mobile resistance genes against colistin, a last-resort antibiotic in human medicine for treating clinical infections caused by multidrug-resistant Gram-negative bacteria. Quantitative PCR assays we developed showed that 34.1% of Musca domestica (86/252) and 51.1% of Protophormia terraenovae (23/45) isolates were positive for the mcr-1 gene, 1.2% of M. domestica (3/252) and 2.2% of P. terraenovae (2.2%, 1/45) isolates were positive for mcr-2, and 5.2% of M. domestica (13/252) and 44.4% of P. terraenovae (20/45) isolates were positive for mcr-3. Overall, 4.8% (9/189) of bacteria isolated from the flies were positive for the mcr-1 gene (Escherichia coli: 8.3%, 4/48; Enterobacter cloacae: 12.5%, 1/8; Providencia alcalifaciens: 11.8%, 2/17; Providencia stuartii: 4.9%, 2/41), while none were positive for mcr-2 and mcr-3. Four mcr-1-positive isolates (two P. stuartii and two P. alcalifaciens) from blow flies trapped near a dumpster had a MIC for colistin above 4 mg/ml. This study reports mcr-1 carriage in Providencia spp. and detection of mcr-2 and mcr-3 after their initial identification in Belgium and China, respectively. This study suggests that flies might contribute significantly to the dissemination of bacteria, carrying these genes into a large variety of ecological niches. Further studies are warranted to explore the roles that flies might play in the spread of colistin resistance genes.IMPORTANCE Antimicrobial resistance is recognized as one of the most serious global threats to human health. An option for treatment of the Gram-negative ESKAPE (Enterococcus faecium, Staphylococcus aureus, Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa, and Enterobacter species) bacteria with multiple drug resistance was the reintroduction of the older antibiotic colistin. However, a mobile colistin resistance gene (mcr-1) has recently been found to occur widely; very recently, two other colistin resistance genes (mcr-2 and mcr-3) have been identified in Belgium and China, respectively. In this study, we report the presence of colistin resistance genes in flies. This study also reports the carriage of colistin resistance genes in the genus Providencia and detection of mcr-2 and mcr-3 after their initial identification. This study will stimulate more in-depth studies to fully elucidate the transmission mechanisms of the colistin resistance genes and their interaction.
机译:蝇具有在不同环境之间转移病原体的能力,是全世界人类疾病最重要的媒介之一。在这项研究中,我们在大学校园内诱捕了苍蝇,并测试了它们对粘菌素的流动抗性基因,粘菌素是人类医学中用于治疗由多重耐药革兰氏阴性菌引起的临床感染的最后一种抗生素。我们开发的定量PCR分析表明,mcr-1基因阳性的家蝇为34.1%(86/252),土生Protophormia terraenovae的菌株为23.45(51.1%),而家蝇M.-1(3/252)和mcr-1基因阳性。 Mcr-2阳性的2.2。%的戊酸疟原虫(2.2%,1/45)分离株,mcr-2阳性的有5.2%的家蝇(13/252)和44.4%的M. terraenovae分离株(20/45)阳性。 mcr-3。总体而言,从果蝇中分离出的细菌中有4.8%(9/189)对mcr-1基因呈阳性(大肠杆菌:8.3%,4/48;泄殖腔肠杆菌:12.5%,1/8;嗜酸普罗维登斯菌:11.8%, 2/17;斯图尔特普罗维登斯州:4.9%,2/41),而mcr-2和mcr-3均无阳性。被困在垃圾箱附近的蝇blow中的四个mcr-1阳性分离株(两个斯图亚特氏假单胞菌和两个嗜酸假单胞菌)具有大肠菌素的MIC高于4 mg / ml。本研究报告了Providencia spp中的mcr-1运输。对mcr-2和mcr-3分别在比利时和中国进行初步鉴定后进行检测。这项研究表明,苍蝇可能会极大地促进细菌的传播,并将这些基因带入各种各样的生态位。有必要进行进一步的研究,以探讨果蝇在大肠粘菌素抗性基因传播中可能发挥的作用。重要提示抗菌素抗性被认为是对人类健康最严重的全球威胁之一。具有多重耐药性的革兰氏阴性ESKAPE(粪肠球菌,金黄色葡萄球菌,肺炎克雷伯菌,鲍曼不动杆菌,铜绿假单胞菌和肠杆菌)细菌的一种选择是重新引入较旧的抗生素大肠菌素。然而,最近发现一种可移动的大肠粘菌素抗性基因(mcr-1)广泛存在。最近,在比利时和中国分别发现了另外两个大肠菌素抗性基因(mcr-2和mcr-3)。在这项研究中,我们报告了果蝇中粘菌素抗性基因的存在。这项研究还报告了大肠菌素抗性基因在普罗维登西亚属中的运输以及在最初鉴定后检测到的mcr-2和mcr-3。这项研究将刺激更深入的研究,以充分阐明大肠菌素抗性基因的传播机制及其相互作用。

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