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Emergence of new variants of antibiotic resistance genomic islands among multidrug-resistant Salmonella enterica in poultry

机译:禽类抗性沙门氏菌肠内抗生素抗性基因组岛新变种的出现

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Non-typhoidal Salmonella enterica (NTS) are diverse and important bacterial pathogens consisting of more than 2600 different serovars, with varying host-specificity. Here, we characterized the poultry-associated serovars in Israel, analysed their resistome and illuminated the molecular mechanisms underlying common multidrug resistance (MDR) patterns. We show that at least four serovars including Infantis, Muenchen, Newport and Virchow present a strong epidemiological association between their temporal trends in poultry and humans. Worrisomely, 60% from all of the poultry isolates tested (n = 188) were multidrug resistant, mediated by chromosomal SNPs and different mobile genetics elements. A novel streptomycin-azithromycin resistance island and previously uncharacterized versions of the mobilized Salmonella genomic island 1 (SGI1) were identified and characterized in S. Blockley and S. Kentucky isolates respectively. Moreover, we demonstrate that the acquisition of SGI1 does not impose fitness cost during growth under nutrient-limited conditions or in the context of Salmonella infection in the mouse model. Overall, our data emphasize the role of the poultry production as a pool of specific epidemic MDR strains and autonomous genetic elements, which confer resistance to heavy metals and medically relevant antibiotics. These are likely to disseminate to humans via the food chain and fuel the increasing global antibiotic resistance crisis.
机译:非Typhoidal Salmonella肠道(NTS)是由2600多种不同的血清素组成的多种和重要的细菌病原体,具有不同的宿主特异性。在这里,我们在以色列的特征是禽类相关的血清,分析了它们的电阻,并照射了普遍多药耐药性(MDR)模式的分子机制。我们表明,至少有四种血管,包括婴儿,穆健安,纽波特和病毒科在家禽和人类的时间趋势之间存在强烈的流行病学协会。令人担忧的是,由测试(n = 188)的所有家禽分离株60%是多药物,由染色体SNP和不同的移动遗传元件介导。鉴定了一种新的链霉素 - 二十霉素抵抗岛和预先特异性的动员沙门氏菌基因组岛1(SGI1),分别在S.Blortley和S.肯塔基分离株中鉴定出并表征。此外,我们证明了SGI1的采集不会在营养有限的条件下或在小鼠模型中的沙门氏菌感染的环境下施加健康成本。总体而言,我们的数据强调家禽产量作为特定流行性MDR毒株和自主遗传元件的作用,其赋予重金属和医学相关抗生素的抗性。这些可能通过食物链传播对人类并燃料增加的全球抗生素抗性危机。

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