Donohue Maura J, Best Jennifer M, Smallwood Anthony W, Kostich Mitchell, Rodgers Mark, Shoemaker Jody A
National Exposure Research Laboratory, Office of Ground Water and Drinking Water, National Council on the Aging, and National Risk Management Research Laboratory, U.S. Environmental Protection Agency, Cincinnati, Ohio 45268, USA.
Anal Chem. 2007 Mar 1;79(5):1939-46. doi: 10.1021/ac0611420. Epub 2007 Feb 2.
The genus Aeromonas is one of several medically significant genera that have gained prominence due to their evolving taxonomy and controversial role in human diseases. In this study, matrix-assisted laser desorption/ionization-mass spectrometry (MALDI-MS) was used to analyze the whole cells of both reference strains and unknown Aeromonas isolates obtained from water distribution systems. A library of over 45 unique m/z signatures was created from 40 strains that are representative of the 17 recognized species of Aeromonas, as well as 3 reference strains from genus Vibrio and 2 reference strains from Plesiomonas shigelloides. The library was used to help speciate 52 isolates of Aeromonas. The environmental isolates were broken up into 2 blind studies. Group 1 contained isolates that had a recognizable phenotypic profile and group 2 contained isolates that had an atypical phenotypic profile. MALDI-MS analysis of the water isolates in group 1 matched the phenotypic identification in all cases. In group 2, the MALDI-MS-based determination confirmed the identity of 18 of the 27 isolates. These results demonstrate that MALDI-MS analysis can rapidly and accurately classify species of the genus Aeromonas, making it a powerful tool especially suited for environmental monitoring and detection of microbial hazards in drinking water.
气单胞菌属是因分类不断演变及其在人类疾病中存在争议的作用而受到关注的几个具有医学重要性的属之一。在本研究中,采用基质辅助激光解吸/电离质谱(MALDI-MS)分析了从供水系统中获得的参考菌株和未知气单胞菌分离株的全细胞。从代表气单胞菌17个公认种的40个菌株以及3个弧菌属参考菌株和2个类志贺邻单胞菌参考菌株中创建了一个包含45个以上独特m/z特征的文库。该文库用于协助鉴定52个气单胞菌分离株。环境分离株被分为两项盲法研究。第1组包含具有可识别表型特征的分离株,第2组包含具有非典型表型特征的分离株。第1组水样分离株的MALDI-MS分析在所有情况下均与表型鉴定结果相符。在第2组中,基于MALDI-MS的测定确认了27个分离株中18个的身份。这些结果表明,MALDI-MS分析能够快速、准确地对气单胞菌属进行分类,使其成为一种特别适用于环境监测和饮用水中微生物危害检测的有力工具。