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Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass-Spectrometry (MALDI-TOF MS) Based Microbial Identifications: Challenges and Scopes for Microbial Ecologists

机译:基于基质辅助的激光解吸/电离飞行时间质谱(MALDI-TOF MS)的微生物鉴定:微生物生态学家的挑战和范围

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摘要

Matrix-assisted laser desorption/ionization time-of-flight mass-spectrometry (MALDI-TOF MS) based biotyping is an emerging technique for high-throughput and rapid microbial identification. Due to its relatively higher accuracy, comprehensive database of clinically important microorganisms and low-cost compared to other microbial identification methods, MALDI-TOF MS has started replacing existing practices prevalent in clinical diagnosis. However, applicability of MALDI-TOF MS in the area of microbial ecology research is still limited mainly due to the lack of data on non-clinical microorganisms. Intense research activities on cultivation of microbial diversity by conventional as well as by innovative and high-throughput methods has substantially increased the number of microbial species known today. This important area of research is in urgent need of rapid and reliable method(s) for characterization and de-replication of microorganisms from various ecosystems. MALDI-TOF MS based characterization, in our opinion, appears to be the most suitable technique for such studies. Reliability of MALDI-TOF MS based identification method depends mainly on accuracy and width of reference databases, which need continuous expansion and improvement. In this review, we propose a common strategy to generate MALDI-TOF MS spectral database and advocated its sharing, and also discuss the role of MALDI-TOF MS based high-throughput microbial identification in microbial ecology studies.
机译:基于基质的激光解吸/电离飞行时间质谱(MALDI-TOF MS)技术是一种新兴的技术,可用于高通量和快速的微生物鉴定。相对于其他微生物鉴定方法,由于其相对较高的准确性,具有临床重要性的微生物的全面数据库以及低成本,MALDI-TOF MS已开始取代临床诊断中普遍存在的现有做法。但是,MALDI-TOF MS在微生物生态学研究领域的应用仍然受到限制,这主要是由于缺乏非临床微生物的数据。通过常规方法以及通过创新和高通量方法进行的微生物多样性培养的深入研究活动,大大增加了当今已知的微生物物种的数量。这个重要的研究领域迫切需要快速可靠的方法来表征和去复制来自各种生态系统的微生物。在我们看来,基于MALDI-TOF MS的表征似乎是最适合此类研究的技术。基于MALDI-TOF MS的识别方法的可靠性主要取决于参考数据库的准确性和宽度,需要不断扩展和改进。在这篇综述中,我们提出了生成MALDI-TOF MS光谱数据库的通用策略并倡导其共享,并讨论了基于MALDI-TOF MS的高通量微生物鉴定在微生物生态学研究中的作用。

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