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首页> 外文期刊>Analytical chemistry >Combination of Capillary Isoelectric Focusing in a Tapered Capillary with MALDI-TOF MS for Rapid and Reliable Identification of Dickeya Species from Plant Samples
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Combination of Capillary Isoelectric Focusing in a Tapered Capillary with MALDI-TOF MS for Rapid and Reliable Identification of Dickeya Species from Plant Samples

机译:锥形毛细管中的毛细管等电聚焦与MALDI-TOF MS结合使用,可从植物样品中快速可靠地鉴定Dickeya种

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摘要

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.
机译:进行这项研究是为了研究将锥形等离子熔融石英(FS)毛细管中的毛细管等电聚焦(CIEF)与基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)结合使用的可行性。从包含植物组织的样品中提取的细菌进行可靠的鉴定。基于它们等电点的紧密接近,选择了代表迪卡属属的不同物种的八种菌株:菊花D.菊花,菊花D.菊花。帕特尼ii。chrysanthemi bv。 chrysanthemi,D。dadantii,D。paradisiaca,D。solani,D。diffenbachiae和D. dianthicola。由于即使在较窄的pH梯度下使用圆柱形FS毛细管(通常在CIEF中使用)进行CIEF时,也不容易区分迪基菌种(spp。),因此使用了锥形FS毛细管,这使得令人满意由于锥形FS毛细管中CIEF的分离效率提高而对被检查细菌产生了歧视。锥形FS毛细管中的CIEF也已成功用于Dickeya spp的检测和表征。在含有植物组织的样品中然后将CIEF与MALDI-TOF MS的离线组合用于快速可靠地鉴定Dickeya spp。在含有植物组织的样品中。已发现植物组织的存在不影响结果,就快速,可靠地检测和鉴定含植物组织的样品中的细菌而言,所提出的程序非常有前途。

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