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Selection for Antimicrobial Resistance in Foodborne Pathogens through Exposure to UV Light and Nonthermal Atmospheric Plasma Decontamination Techniques

机译:通过暴露于UV光和非热大气凝固净化技术,在食品中抗菌病原体抗性的选择

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This study was aimed at assessing whether the repeated exposure of 12 strains of Salmonella spp., Escherichia coli , and Listeria monocytogenes to alternative nonthermal decontamination techniques with UV light (UV-C) and nonthermal atmospheric plasma (NTAP) may cause the emergence of variants showing increased resistance to clinically relevant antibiotics (ampicillin, cefotaxime, ciprofloxacin, gentamicin, streptomycin, tetracycline, erythromycin, vancomycin, and colistin). UV-C and NTAP treatments were applied on the surface of inoculated brain heart infusion (BHI) agar plates. Survivors were recovered and after 24?h of growth in BHI broth were again subjected to the decontamination treatment; this was repeated for 10 consecutive cycles. A total of 174 strain/decontamination technique/antibiotic combinations were tested, and 12 variant strains with increased resistance to one of the antibiotics studied were identified, with the increases in the MICs in Mueller-Hinton broth ranging from 2- to 256-fold. The variant strains of Salmonella spp. isolated were further characterized through phenotypic screenings and whole-genome sequencing (WGS) analyses. Most changes in susceptibility were observed for antibiotics that act at the level of protein synthesis (aminoglycosides, tetracyclines, and glycylcyclines) or DNA replication (fluoroquinolones), as well as for polymyxins. No changes in resistance to β-lactams were detected. WGS analyses showed the occurrence of sequence alterations in some antibiotic cellular targets (e.g., gyrA for ciprofloxacin-resistant variants, rpsL for a streptomycin-resistant variant), accompanied by variations in stress response regulators and membrane transporters likely involved in the nonselective efflux of antibiotics, which altogether resulted in a low- to medium-level increase in microbial resistance to several antibiotics.IMPORTANCE The emergence and spread of antibiotic resistance along the food chain can be influenced by the different antimicrobial strategies used from farm to fork. This study evidences that two novel, not yet widely used, nonthermal microbial decontamination techniques, UV light and nonthermal atmospheric plasma, can select variants with increased resistance to various clinically relevant antibiotics, such as ciprofloxacin, streptomycin, tetracycline, and erythromycin. Whole-genome analysis of the resistant variants obtained for Salmonella spp. allowed identification of the genetic changes responsible for the observed phenotypes and suggested that some antimicrobial classes are more susceptible to the cross-resistance phenomena observed. This information is relevant, since these novel decontamination techniques are being proposed as possible alternative green techniques for the decontamination of environments and equipment in food and clinical settings.
机译:该研究旨在评估12种沙门氏菌SPP的重复暴露是否有12株的沙门氏菌和李斯特菌单核细胞增生,与UV光(UV-C)和非热大气血浆(NTAP)的替代的非热净化技术(NTAP)可能导致变体的出现显示对临床相关抗生素的抗性增加(氨苄青霉素,头孢噻肟,环丙沙星,庆大霉素,链霉素,四环素,红霉素,万古霉素和菌氨酸)。将UV-C和NTAP处理施用于接种脑心脏输注(BHI)琼脂平板的表面上。幸存者被回收,在24℃的BHI肉汤中进行了24℃,再次进行去污治疗;这重复了10个连续循环。测试了总共174种菌株/去污技术/抗生素组合,并鉴定了12种具有抗生素抗性抗性增加的12个变异菌株,穆勒河畔杂液汤中的麦克风从2-至256倍的增加。沙门氏菌SPP的变异菌株。通过表型筛选和全基因组测序(WGS)分析进一步表征分离。对于在蛋白质合成(氨基糖苷,四环素和糖醋素)或DNA复制(氟喹啉)和多种辛的抗生素中,观察到易感性的大多数变化。检测到抗β-内酰胺的耐药性没有变化。 WGS分析显示,一些抗生素细胞靶标的序列改变的发生(例如,用于铁鲑鱼抗性变体的RPS1,用于链霉素抗性变体的RPS1),伴随着可能参与抗生素的非选择性渗透的应力反应调节剂和膜转运蛋白的变化其中,总导致微生物耐药性低至中水平增加。分析沿着食物链的抗生素抗性的出现和传播可能受到农场到叉子的不同抗微生物策略的影响。这项研究证据证明了两种新颖,尚未广泛使用的,非热的微生物去污技术,UV光和非热大气血浆,可以选择具有对各种临床相关抗生素的抗性增加的变体,例如环丙沙星,链霉素,四环素和红霉素。对沙门氏菌SPP获得的抗性变体的全基因组分析。允许鉴定对观察到的表型负责的遗传变化,并表明一些抗微生物类别更容易被观察到的交叉现象。该信息是相关的,因为这些新颖的净化技术是作为可能的替代绿色技术,用于在食品和临床环境中净化环境和设备。

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