Department of Biological Safety, Federal Institute for Risk Assessment, Berlin, Germany.
J Appl Microbiol. 2010 Jul;109(1):199-211. doi: 10.1111/j.1365-2672.2009.04647.x. Epub 2009 Dec 7.
Vibrio identification by means of traditional microbiological methods is time consuming because of the many biochemical tests that have to be performed to distinguish closely related species. This work aimed at evaluating the use of MALDI-TOF mass spectrometry for the rapid identification of Vibrio (V.) spp. as an advantageous application to rapidly discriminate the most important Vibrio spp. and distinguish Vibrio spp. from closely related bacterial species like Photobacterium damselae and Grimontia hollisae and other aquatic bacteria like Aeromonas spp.
Starting from sub-colony amounts of pure cultures grown on agar plates, a very simple sample preparation procedure was established and combined with a rapid and automated measurement protocol that allowed species identification within minutes. Closely related species like Vibrio alginolyticus and Vibrio parahaemolyticus or Vibrio cholerae and Vibrio mimicus could thus be differentiated by defining signatures of species-identifying biomarker ions (SIBIs). As a reference method for species designation and for determination of relationships between strains with molecular markers, partial rpoB gene sequencing was applied.
The MALDI-TOF MS-based method as well as the rpoB sequence-based approach for Vibrio identification described in this study produced comparable classification results. The construction of phylogenetic trees from MALDI-TOF MS and rpoB sequences revealed a very good congruence of both methods.
Our results suggest that whole-cell MALDI-TOF MS-based proteometric characterization represents a powerful tool for rapid and accurate classification and identification of Vibrio spp. and related species.
由于需要进行许多生化测试来区分密切相关的物种,因此通过传统微生物学方法鉴定弧菌需要耗费大量时间。本研究旨在评估 MALDI-TOF 质谱法用于快速鉴定弧菌(Vibrio)属的应用,作为一种有利的应用,可以快速区分最重要的弧菌属,并将弧菌属与密切相关的细菌物种(如发光杆菌和霍利斯弧菌)以及其他水生细菌(如气单胞菌属)区分开来。
从琼脂平板上培养的纯培养物的亚菌落数量开始,建立了一种非常简单的样品制备程序,并与快速自动化的测量方案相结合,允许在几分钟内完成物种鉴定。因此,可以通过定义物种鉴定生物标志物离子(SIBIs)的特征来区分密切相关的物种,如 Alg 弧菌和副溶血弧菌或霍乱弧菌和类霍乱弧菌。作为物种鉴定和用分子标记确定菌株之间关系的参考方法,应用了 rpoB 基因部分测序。
本研究中描述的基于 MALDI-TOF MS 的方法以及基于 rpoB 序列的弧菌鉴定方法产生了可比的分类结果。基于 MALDI-TOF MS 和 rpoB 序列构建的系统发育树显示了两种方法非常好的一致性。
我们的研究结果表明,全细胞 MALDI-TOF MS 基于蛋白质组学的特征代表了一种快速准确分类和鉴定弧菌属及相关物种的有力工具。