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首页> 外文期刊>Journal of Clinical Microbiology >Identification of Acinetobacter Species and Genotyping of Acinetobacter baumannii by Multilocus PCR and Mass Spectrometry
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Identification of Acinetobacter Species and Genotyping of Acinetobacter baumannii by Multilocus PCR and Mass Spectrometry

机译:多基因座PCR和质谱法鉴定不动杆菌种及鲍曼不动杆菌基因型

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Members of the genus Acinetobacter are ubiquitous in soil and water and are an important cause of nosocomial infections. A rapid method is needed to genotype Acinetobacter isolates to determine epidemiology and clonality during infectious outbreaks. Multilocus PCR followed by electrospray ionization mass spectrometry (PCR/ESI-MS) is a method that uses the amplicon base compositions to genotype bacterial species. In order to identify regions of the Acinetobacter genome useful for this method, we sequenced regions of six housekeeping genes (trpE, adk, efp, mutY, fumC, and ppa) from 267 isolates of Acinetobacter. Isolates were collected from infected and colonized soldiers and civilians involved in an outbreak in the military health care system associated with the conflict in Iraq, from previously characterized outbreaks in European hospitals, and from culture collections. Most of the isolates from the Iraqi conflict were Acinetobacter baumannii (189 of 216 isolates). Among these, 111 isolates had genotypes identical or very similar to those associated with well-characterized A. baumannii isolates from European hospitals. Twenty-seven isolates from the conflict were found to have genotypes representing different Acinetobacter species, including 8 representatives of Acinetobacter genomospecies 13TU and 13 representatives of Acinetobacter genomospecies 3. Analysis by the PCR/ESI-MS method using nine primer pairs targeting the most information-rich regions of the trpE, adk, mutY, fumC, and ppa genes distinguished 47 of the 48 A. baumannii genotypes identified by sequencing and identified at the species level at least 18 Acinetobacter species. Results obtained with our genotyping method were essentially in agreement with those obtained by pulse-field gel electrophoresis analysis. The PCR/ESI-MS genotyping method required 4 h of analysis time to first answer with additional samples subsequently analyzed every 10 min. This rapid analysis allows tracking of transmission for the implementation of appropriate infection control measures on a time scale previously not achievable.
机译:不动杆菌属的成员普遍存在于土壤和水中,是引起医院感染的重要原因。需要一种快速的方法来对不动杆菌分离株进行基因分型,以确定传染病爆发期间的流行病学和克隆性。先进行多位点PCR,然后进行电喷雾电离质谱(PCR / ESI-MS),这是一种使用扩增子碱基组合物对细菌种类进行基因分型的方法。为了确定可用于此方法的不动杆菌基因组区域,我们对六个看家基因( trpE adk 来自267个不动杆菌属的分离株的efp mutY fumC ppa 。从感染和定居的士兵和平民那里收集隔离株,这些士兵和平民参与了与伊拉克冲突有关的军事卫生保健体系的暴发,先前在欧洲医院爆发的暴发以及文化收藏。伊拉克冲突中的大多数分离株是鲍曼不动杆菌(216株分离株中的189株)。其中,111个分离株的基因型与特征明确的 A相关的基因型相同或非常相似。鲍曼氏菌来自欧洲医院的分离株。发现该冲突中的27株分离物具有代表不同不动杆菌物种的基因型,包括8个不动杆菌基因型13TU的代表和13个不动杆菌的代表。基因组物种3.使用九个引物对,通过PCR / ESI-MS方法进行分析,这些引物对针对 trpE adk mutY fumC ppa 基因区分了48个 A中的47个。通过测序鉴定了鲍曼不育基因型,并在物种水平上鉴定了至少18个不动杆菌属。通过我们的基因分型方法获得的结果与通过脉冲场凝胶电泳分析获得的结果基本一致。 PCR / ESI-MS基因分型方法需要4小时的分析时间才能首次获得答案,随后每10分钟分析一次其他样品。这种快速分析可以在以前无法实现的时间范围内跟踪传播情况,以实施适当的感染控制措施。

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