Institute of Animal Hygiene and Environmental Health, Free University Berlin, Philippstrasse 13, Berlin, Germany.
Clin Microbiol Infect. 2012 May;18(5):461-7. doi: 10.1111/j.1469-0691.2011.03593.x. Epub 2011 Jul 22.
The possibility of using matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) for rapid identification of pathogenic and non-pathogenic species of the genus Prototheca has been recently demonstrated. A unique reference database of MALDI-TOF MS profiles for type and reference strains of the six generally accepted Prototheca species was established. The database quality was reinforced after the acquisition of 27 spectra for selected Prototheca strains, with three biological and technical replicates for each of 18 type and reference strains of Prototheca and four strains of Chlorella. This provides reproducible and unique spectra covering a wide m/z range (2000-20 000 Da) for each of the strains used in the present study. The reproducibility of the spectra was further confirmed by employing composite correlation index calculation and main spectra library (MSP) dendrogram creation, available with MALDI Biotyper software. The MSP dendrograms obtained were comparable with the 18S rDNA sequence-based dendrograms. These reference spectra were successfully added to the Bruker database, and the efficiency of identification was evaluated by cross-reference-based and unknown Prototheca identification. It is proposed that the addition of further strains would reinforce the reference spectra library for rapid identification of Prototheca strains to the genus and species/genotype level.
最近已经证明,基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)可用于快速鉴定 Prototheca 属的致病和非致病种。建立了一个独特的 MALDI-TOF MS 图谱参考数据库,其中包含六种公认的 Prototheca 种的型和参考菌株。在获得了 27 种选定 Prototheca 菌株的光谱后,数据库的质量得到了加强,每个 Prototheca 型和参考菌株有三个生物学和技术重复,以及 Chlorella 的四个菌株。这为目前研究中使用的每种菌株提供了可重复且独特的光谱,涵盖了广泛的 m/z 范围(2000-20000 Da)。通过使用 MALDI Biotyper 软件进行复合相关指数计算和主要图谱库(MSP)聚类树创建,进一步确认了光谱的重现性。获得的 MSP 聚类树与基于 18S rDNA 序列的聚类树相当。这些参考光谱已成功添加到 Bruker 数据库中,并通过基于交叉引用的未知 Prototheca 鉴定来评估鉴定的效率。有人提出,进一步添加菌株将加强 Prototheca 菌株鉴定的参考图谱库,以便快速鉴定属和种/基因型水平的 Prototheca 菌株。