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基于核苷酸多态性的单管测试可对所有目前描述的布鲁氏菌属物种进行稳健的分子鉴定。

Nucleotide polymorphism-based single-tube test for robust molecular identification of all currently described Brucella species.

机构信息

Veterinary and Agrochemical Research Centre, Department of Bacterial Diseases, Brussels, Belgium.

出版信息

Appl Environ Microbiol. 2011 Sep;77(18):6674-9. doi: 10.1128/AEM.00767-11. Epub 2011 Jul 29.

Abstract

Among the numerous molecular methods described during the last 20 years to identify Brucella, multiplexed amplification methods offer the cheapest and simplest technical solution for molecular identification. However, one disadvantage of such methods is their need to undergo technical revalidation each time a new marker is added to the system. Moreover, polymorphic markers cannot be assessed at the single-nucleotide level in these assays. Since new Brucella species are continuously being described, open methodologies able to accommodate new markers while preserving all other system parameters have an obvious advantage. We present a ligase chain reaction (LCR)-based method that simultaneously assesses multiple genetic markers at the single-nucleotide level. Most of the selected markers originate from a multilocus sequence typing (MLST) database that has been extensively validated on hundreds of different Brucella strains. When assayed on both reference and field strains, the method yields characteristic capillary electrophoresis profiles for each of the 10 Brucella species described to date and displays discriminatory potential below the species level for some. Since the LCR methodology is insensitive to interference resulting from the use of multiple oligonucleotides in a single mixture, the way is open for smooth future updates of the proposed system. Such updates are inevitable, given the pending description of new Brucella species.

摘要

在过去 20 年中描述的众多用于鉴定布鲁氏菌的分子方法中,多重扩增方法为分子鉴定提供了最便宜和最简单的技术解决方案。然而,此类方法的一个缺点是,每次向系统中添加新标记时都需要进行技术重新验证。此外,在这些检测中,不能在单核苷酸水平上评估多态性标记。由于不断有新的布鲁氏菌种被描述,因此具有能够容纳新标记而同时保留所有其他系统参数的开放式方法具有明显的优势。我们提出了一种基于连接酶链反应 (LCR) 的方法,可在单核苷酸水平上同时评估多个遗传标记。所选的大多数标记源自已在数百种不同的布鲁氏菌菌株上经过广泛验证的多位点序列分型 (MLST) 数据库。在对参考菌株和田间菌株进行检测时,该方法为迄今为止描述的 10 种布鲁氏菌中的每一种产生特征性毛细管电泳图谱,并显示出在某些情况下低于种水平的区分潜力。由于 LCR 方法对单个混合物中使用多个寡核苷酸产生的干扰不敏感,因此为将来顺利更新拟议系统开辟了道路。鉴于即将描述新的布鲁氏菌种,这种更新是不可避免的。

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