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基于pcs、pmtA和16S rRNA基因扩增的军团菌属快速检测与鉴别PCR方法。

PCR method for the rapid detection and discrimination of Legionella spp. based on the amplification of pcs, pmtA, and 16S rRNA genes.

作者信息

Janczarek Monika, Palusińska-Szysz Marta

机构信息

Department of Genetics and Microbiology, Institute of Microbiology and Biotechnology, Maria Curie-Sklodowska University, Akademicka St. 19, 20-033, Lublin, Poland.

出版信息

J Appl Genet. 2016 May;57(2):251-61. doi: 10.1007/s13353-015-0317-2. Epub 2015 Sep 30.

Abstract

Legionella bacteria are organisms of public health interest due to their ability to cause pneumonia (Legionnaires' disease) in susceptible humans and their ubiquitous presence in water supply systems. Rapid diagnosis of Legionnaires' disease allows the use of therapy specific for the disease. L. pneumophila serogroup 1 is the most common cause of infection acquired in community and hospital environments. The non-L. pneumophila infections are likely under-detected because of a lack of effective diagnosis. In this work, simplex and duplex PCR assays with the use of new molecular markers pcs and pmtA involved in phosphatidylcholine synthesis were specified for rapid and cost-efficient identification and distinguishing Legionella species. The sets of primers developed were found to be sensitive and specific for reliable detection of Legionella belonging to the eight most clinically relevant species. Among these, four primer sets I, II, VI, and VII used for duplex-PCRs proved to have the highest identification power and reliability in the detection of the bacteria. Application of this PCR-based method should improve detection of Legionella spp. in both clinical and environmental settings and facilitate molecular typing of these organisms.

摘要

嗜肺军团菌是具有公共卫生意义的微生物,因为它们能够在易感人群中引发肺炎(军团病),且在供水系统中普遍存在。军团病的快速诊断有助于采用针对该疾病的特定疗法。嗜肺军团菌血清1型是社区和医院环境中获得性感染的最常见病因。非嗜肺军团菌感染可能因缺乏有效诊断而未被充分检测到。在这项研究中,使用参与磷脂酰胆碱合成的新分子标记物pcs和pmtA,确定了单重和双重PCR检测方法,用于快速且经济高效地鉴定和区分军团菌属菌种。所开发的引物组对可靠检测属于八个最具临床相关性的军团菌菌种具有敏感性和特异性。其中,用于双重PCR的四组引物I、II、VI和VII在检测细菌方面具有最高的鉴定能力和可靠性。这种基于PCR的方法的应用应能改善临床和环境环境中军团菌属菌种的检测,并便于对这些微生物进行分子分型。

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