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首页> 外文期刊>Saudi Journal of Biological Sciences >Acinetobacter baumannii as a community foodborne pathogen: Peptide mass fingerprinting analysis, genotypic of biofilm formation and phenotypic pattern of antimicrobial resistance
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Acinetobacter baumannii as a community foodborne pathogen: Peptide mass fingerprinting analysis, genotypic of biofilm formation and phenotypic pattern of antimicrobial resistance

机译:AcineTobacter Baumannii作为社区食用的病原体:肽质量指纹分析,生物膜形成的基因型和抗微生物抗性的表型模式

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摘要

Acinetobacter baumannii ( A. baumannii ) is one of the most common Gram-negative pathogens that represent a major threat to human life. Because the prevalence of Multidrug-resistant biofilm-forming A. baumannii is increasing all over the world, this may lead to outbreaks of hospital infections. Nonetheless, the role of raw meat as a reservoir for A. baumannii remains unclear. Here our research was aimed to exhibit the frequency, precise identification, and genotyping of biofilm-related genes as well as antimicrobial resistance of A. baumannii isolates of raw meat specimens. Fifty-five A. baumannii strains were recovered from 220 specimens of different animal meat and then identified by Peptide Mass Fingerprinting Technique (PMFT). All identified isolates were genotyped by the qPCR method for the existence of biofilm-related genes ( ompA, bap, blaPER-1, csuE, csgA, and fimH ). In addition, the antimicrobial resistance against A. baumannii was detected by the Kirby-Bauer method. Based on our findings, the frequency rate of 55 A. baumannii isolates was 46.55%, 32.50%, 15.00%, and 9.68% of sheep, chicken, cow, and camel raw meat samples, respectively. The PMFT was able to identify all strains by 100%. the percentages of csuE , ompA , bla PER -1, bap, and csgA genes in biofilm and non-biofilm producer A. baumannii were 72.73%, 60%, 58.2%, 52.74%, and 25.45%, respectively. In contrast, the fimH was not detected in all non-biofilm and biofilm producer strains . The ompA , bap, blaPER-1, csgA were detected only in biofilm-producing A. baumannii isolates. The maximum degree of resistance was observed against amoxicillin/clavulanic acid (89.10%), gentamicin (74.55%), tetracycline (72.73%), ampicillin (65.45%), and tobramycin (52.73%). In conclusion, our investigation demonstrated the high incidence of multi-drug resistant A. baumannii in raw meat samples, with a high existence of biofilm-related virulence genes of ompA, bap, blaPER-1, csgA . Therefore, it has become necessary to take the control measures to limit the development of A. baumannii .
机译:AcineTobacter Baumannii(A.Baumannii)是最常见的革兰氏阴性病原体之一,代表了对人类生活的重大威胁。因为多药物抗性生物膜形成的患病率为全世界都越来越多,所以可能导致医院感染的爆发。尽管如此,生肉作为A的水库的作用仍然不清楚。在这里,我们的研究旨在表现出生物膜相关基因的频率,精确鉴定和基因分型,以及生肉标本的Baumannii分离物的抗微生物抗性。从220个不同的动物肉标本中恢复了五十五个A. Baumannii菌株,然后通过肽质量指纹识别技术(PMFT)鉴定。所有已识别的分离物都是通过QPCR方法进行基因分型,用于存在生物膜相关基因(OMPA,BAP,BLBER-1,CSUE,CSGA和FIMH)。此外,柯比鲍尔方法检测到A.Baumannii的抗微生物抗性。根据我们的研究结果,分别为55 A.Baumannii分离株的频率率分别为46.55%,32.50%,15.00%和9.68%的绵羊,鸡,牛和骆驼原料肉样本。 PMFT能够通过100%鉴定所有菌株。生物膜和非生物膜生产者A.Baumannii中的CSUE,OMPA,BLA每-1,BAP和CSGA基因的百分比分别为72.73%,6​​0%,58.2%,52.74%和25.45%。相比之下,在所有非生物膜和生物膜生产者菌株中未检测到FIMH。仅在生物膜产生A.Baumannii分离物中检测OMPA,BAP,Blaper-1,CSGA。针对阿莫西林/克拉维酸(89.10%),庆大霉素(74.55%),四环素(72.73%),氨苄青霉素(65.45%)和染发霉素(52.73%),观察到最大抗性程度。总之,我们的调查显示了生肉样本中多药物A.Baumannii的高发病率,具有高毒性相关毒力基因的高毒性有毒基因的OMA,BAP,Blaper-1,CSGA。因此,有必要采取控制措施来限制A. Baumannii的发展。

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