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Rapid Classification and Identification of Salmonellae at the Species and Subspecies Levels by Whole-Cell Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry▿ †

机译:通过全细胞基质辅助激光解吸电离-飞行时间质谱法对沙门氏菌在种和亚种水平上的快速分类和鉴定

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摘要

Variations in the mass spectral profiles of multiple housekeeping proteins of 126 strains representing Salmonella enterica subsp. enterica (subspecies I), S. enterica subsp. salamae (subspecies II), S. enterica subsp. arizonae (subspecies IIIa), S. enterica subsp. diarizonae (subspecies IIIb), S. enterica subsp. houtenae (subspecies IV), and S. enterica subsp. indica (subspecies VI), and Salmonella bongori were analyzed to obtain a phylogenetic classification of salmonellae based on whole-cell matrix-assisted laser desorption ionization-time of flight mass spectrometric bacterial typing. Sinapinic acid produced highly informative spectra containing a large number of biomarkers and covering a wide molecular mass range (2,000 to 40,000 Da). Genus-, species-, and subspecies-identifying biomarker ions were assigned on the basis of available genome sequence data for Salmonella, and more than 200 biomarker peaks, which corresponded mainly to abundant and highly basic ribosomal or nucleic acid binding proteins, were selected. A detailed comparative analysis of the biomarker profiles of Salmonella strains revealed sequence variations corresponding to single or multiple amino acid changes in multiple housekeeping proteins. The resulting mass spectrometry-based bacterial classification was very comparable to the results of DNA sequence-based methods. A rapid protocol that allowed identification of Salmonella subspecies in minutes was established.
机译:代表肠炎沙门氏菌亚种的126个菌株的多种管家蛋白的质谱图谱变化。 enterica(亚种I),S。enterica亚种。 salamae(亚种II),S. enterica subsp。亚利桑那州(亚种IIIa),S. enterica subsp。 diarizonae(亚种IIIb),S. enterica subsp。 houtenae(亚种IV)和S. enterica亚种。根据全细胞基质辅助激光解吸电离飞行时间质谱细菌分型,分析了印度((亚种VI)和邦戈沙门氏菌,以得到系统分类。芥子酸产生了高度信息化的光谱,其中包含大量的生物标志物,并覆盖了很宽的分子量范围(2,000至40,000 Da)。根据沙门氏菌的可用基因组序列数据分配了识别属,种和亚种的生物标志物离子,并选择了200多个生物标志物峰,这些峰主要对应于丰富且高度碱性的核糖体或核酸结合蛋白。沙门氏菌菌株生物标志物谱的详细比较分析显示,序列变异对应于多个管家蛋白中的单个或多个氨基酸变化。所得基于质谱的细菌分类与基于DNA序列的方法的结果非常可比。建立了允许在数分钟内鉴定沙门氏菌亚种的快速方案。

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