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Fourier transform infrared spectroscopy: unlocking fundamentals and prospects for bacterial strain typing

机译:傅里叶变换红外光谱:解锁基础知识和细菌菌株键入前景

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The need to identify highly related bacterial strains is ancient in clinical, industrial, or environmental microbiology. Strategies based on different phenotypic and genotypic principles have been used since the early 1930s with variable outcomes and performances, accompanying the evolution of bacterial features' knowledge as well as technologies, instruments, and data analysis tools. Today, more than ever, the implementation of bacterial typing methods that combine a high reliability and accuracy with a rapid, low-cost, and user-friendly performance is highly desirable, especially for clinical microbiology. FT-IR developments for bacterial discrimination at the infra-species level settled on the identification of bacterial groups previously defined by phenotypic or genotypic typing methods. Therefore, this review provides a brief historical overview of main bacterial strain typing methods, and a comprehensive analysis of the fundamentals and applications of Fourier transform infrared spectroscopy, a phenotypic-based method with potential for routine strain typing. The different studies on FT-IR-based strain typing of diverse Gram-negative and Gram-positive bacterial species are discussed in light of genotypic, phenotypic, and biochemical aspects, in order to definitively give this methodology credit to be widely accepted by microbiologists. Importantly, the discriminatory biochemical fingerprints observed on FT-IR spectra have been consistently correlated with sugar-based coating structures that besides reflecting strain variation are also of high relevance for the specificity in pathogen-host interactions. Thus, FT-IR-based bacterial typing might not only be useful for quick and reliable strain typing but also to help understanding the diversity, evolution, and host adaptation factors of key bacterial pathogens or subpopulations.
机译:在临床,工业或环境微生物学中识别高度相关的细菌菌株的需要。自20世纪30年代初以来,基于不同表型和基因型原理的策略已经使用了可变结果和性能,伴随着细菌特征知识以及技术,仪器和数据分析工具的演变。今天,比以往更高的是,使用快速,低成本和用户友好的性能结合高可靠性和准确性的细菌类型方法是非常需要的,特别是对于临床微生物学。在infra-mateies水平上的细菌辨别的FT-IR开发沉降,鉴定了先前由表型或基因型键入方法定义的细菌基团的鉴定。因此,本综述提供了主要的细菌应变型方法的简要概述,以及傅里叶变换红外光谱的基础和应用的综合分析,一种基于表型的常规菌株键入的方法。根据基因型,表型和生化方面,讨论了对不同革兰氏阴性和革兰氏阳性细菌种类的不同研究基于FT-IR的应变键入的研究,以便明确地提供这种方法学分,以被微生物学家被广泛接受。重要的是,在FT-IR光谱上观察到的鉴别生化指纹与糖基涂料结构一致地与反射应变变异的基于糖类涂层结构相对于对病原体宿主相互作用的特异性的高相关性。因此,基于FT-IR的细菌打​​字可能不仅可以用于快速可靠的应变键入,而且还可以帮助理解关键细菌病原体或亚群的多样性,进化和宿主适应因子。

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