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毛细管等电聚焦与 MALDI-TOF MS 的组合在锥形毛细管中用于快速可靠地鉴定来自植物样本的迪氏棒状杆菌属种。

Combination of capillary isoelectric focusing in a tapered capillary with MALDI-TOF MS for rapid and reliable identification of Dickeya species from plant samples.

机构信息

Institute of Analytical Chemistry of the ASCR, vvi, Brno, Czech Republic.

出版信息

Anal Chem. 2013 Jul 16;85(14):6806-12. doi: 10.1021/ac4009176. Epub 2013 Jul 2.

Abstract

This study was undertaken to investigate feasibility of a combination of capillary isoelectric focusing (CIEF) in a tapered fused silica (FS) capillary with matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) for a rapid and reliable identification of bacteria taken from plant-tissue-containing samples. Eight strains representing different species of the genus Dickeya were selected on the basis of close proximity of their isoelectric points: D. chrysanthemi, D. chrysanthemi bv. parthenii, D. chrysanthemi bv. chrysanthemi, D. dadantii, D. paradisiaca, D. solani, D. diffenbachiae, and D. dianthicola. Because the Dickeya species (spp.) cannot be easily discriminated from each other when CIEF is performed in a cylindrical FS capillary (commonly used in CIEF) even if a narrow pH gradient is used, a tapered FS capillary was employed instead, which enabled satisfactory discrimination of the examined bacteria due to enhanced separation efficiency of CIEF in the tapered FS capillary. CIEF in the tapered FS capillary was also successfully used for the detection and characterization of Dickeya spp. in a plant-tissue-containing sample. Then an off-line combination of CIEF with MALDI-TOF MS was employed for rapid and reliable identification of Dickeya spp. in the plant-tissue-containing sample. It was found that the presence of plant tissue did not affect the results, making the proposed procedure very promising with respect to the fast and reliable detection and identification of bacteria in plant-tissue-containing samples.

摘要

本研究旨在探讨在锥形熔融石英(FS)毛细管中结合胶束电动毛细管色谱(CIEF)与基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)的可行性,以便快速可靠地鉴定来自含植物组织样品中的细菌。选择了 8 株代表迪基氏菌属不同种的菌株,基于它们等电点的接近程度:菊欧文氏菌、菊欧文氏菌亚种、菊欧文氏菌、戴克氏菌、帕氏戴克氏菌、腐烂欧文氏菌、差异戴克氏菌和多粘戴克氏菌。由于当在圆柱形 FS 毛细管(常用于 CIEF)中进行 CIEF 时,即使使用窄 pH 梯度,迪基氏菌属(spp.)也不容易彼此区分,因此使用了锥形 FS 毛细管,由于在锥形 FS 毛细管中 CIEF 的分离效率得到了增强,因此能够令人满意地区分所检查的细菌。锥形 FS 毛细管中的 CIEF 也成功用于检测和表征含植物组织样品中的迪基氏菌属。然后,离线将 CIEF 与 MALDI-TOF MS 结合,用于快速可靠地鉴定含植物组织样品中的迪基氏菌属。结果发现,植物组织的存在并不影响结果,这使得该方法在快速可靠地检测和鉴定含植物组织样品中的细菌方面非常有前景。

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