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首页> 外文期刊>Analytica chimica acta >Rapid identification and classification of Mycobacterium spp. using whole-cell protein barcodes with matrix assisted laser desorption ionization time of flight mass spectrometry in comparison with multigene phylogenetic analysis
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Rapid identification and classification of Mycobacterium spp. using whole-cell protein barcodes with matrix assisted laser desorption ionization time of flight mass spectrometry in comparison with multigene phylogenetic analysis

机译:快速鉴定和分类分枝杆菌。将全细胞蛋白质条形码与基质辅助激光解吸电离飞行时间质谱仪结合使用,并与多基因系统发育分析进行比较

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摘要

The need of quick diagnostics and increasing number of bacterial species isolated necessitate development of a rapid and effective phenotypic identification method. Mass spectrometry (MS) profiling of whole cell proteins has potential to satisfy the requirements. The genus Mycobacterium contains more than 154 species that are taxonomically very close and require use of multiple genes including 16S rDNA for phylogenetic identification and classification. Six strains of five Mycobacterium species were selected as model bacteria in the present study because of their 16S rDNA similarity (98.4-99.8%) and the high similarity of the concatenated 16S rDNA, rpoB and hsp65 gene sequences (95.9-99.9%), requiring high identification resolution. The classification of the six strains by MALDI TOF MS protein barcodes was consistent with, but at much higher resolution than, that of the multi-locus sequence analysis of using 16S rDNA, rpoB and hsp65. The species were well differentiated using MALDI TOF MS and MALDI BioTyper~(TH) software after quick preparation of whole-cell proteins. Several proteins were selected as diagnostic markers for species confirmation. An integration of MALDI TOF MS, MALDI BioTyper~(TH) software and diagnostic protein fragments provides a robust phenotypic approach for bacterial identification and classification.
机译:快速诊断的需要和分离出的细菌种类的增加,需要开发一种快速有效的表型鉴定方法。全细胞蛋白质的质谱(MS)分析具有满足要求的潜力。分枝杆菌属包含超过154个物种,它们在分类学上非常接近,需要使用包括16S rDNA在内的多个基因进行系统发育鉴定和分类。由于它们的16S rDNA相似性(98.4-99.8%)以及串联的16S rDNA,rpoB和hsp65基因序列的高度相似性(95.9-99.9%),本研究选择了5个分枝杆菌属的6个菌株作为模型细菌。高识别分辨率。通过MALDI TOF MS蛋白条形码对六种菌株的分类与使用16S rDNA,rpoB和hsp65的多基因座序列分析的分类一致,但分辨率要高得多。快速制备全细胞蛋白后,使用MALDI TOF MS和MALDI BioTyper〜(TH)软件对物种进行了很好的区分。选择了几种蛋白质作为物种确认的诊断标记。 MALDI TOF MS,MALDI BioTyper(TH)软件和诊断蛋白片段的集成为细菌鉴定和分类提供了可靠的表型方法。

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