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首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Epidemiology of transmissible diseases: Array hybridization and next generation sequencing as universal nucleic acid-mediated typing tools
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Epidemiology of transmissible diseases: Array hybridization and next generation sequencing as universal nucleic acid-mediated typing tools

机译:传染性疾病的流行病学:阵列杂交和下一代测序作为通用核酸介导的键入工具

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摘要

The magnitude of interest in the epidemiology of transmissible human diseases is reflected in the vast number of tools and methods developed recently with the expressed purpose to characterize and track evolutionary changes that occur in agents of these diseases over time. Within the past decade a new suite of such tools has become available with the emergence of the so-called "omics" technologies. Among these, two are exponents of the ongoing genomic revolution. Firstly, high-density nucleic acid probe arrays have been proposed and developed using various chemical and physical approaches. Via hybridization-mediated detection of entire genes or genetic polymorphisms in such genes and intergenic regions these so called "DNA chips" have been successfully applied for distinguishing very closely related microbial species and strains. Second and even more phenomenal, next generation sequencing (NGS) has facilitated the assessment of the complete nucleotide sequence of entire microbial genomes. This technology currently provides the most detailed level of bacterial genotyping and hence allows for the resolution of microbial spread and short-term evolution in minute detail. We will here review the very recent history of these two technologies, sketch their usefulness in the elucidation of the spread and epidemiology of mostly hospital-acquired infections and discuss future developments.
机译:传染性人类疾病流行病学的兴趣幅度被反映在最近开发的大量工具和方法中,表达目的是表征和跟踪这些疾病的代理随着时间的推移而发生的进化变化。在过去的十年中,新的这样的工具套件已经出现了所谓的“OMIC”技术。其中,两个是正在进行的基因组革命的指数。首先,已经提出了使用各种化学和物理方法来提出和开发的高密度核酸探针阵列。通过杂交介导的介导的介导的全基因或遗传多态性在这些基因中,这些基因的遗传聚合物已经成功地应用于区分非常紧密相关的微生物物种和菌株的基因和基因组。第二甚至更具现象,下一代测序(NGS)促进了对整个微生物基因组的完全核苷酸序列的评估。该技术目前提供了最细微的细菌基因分型水平,因此允许在微生物的细节中分辨微生物扩散和短期演变。我们将在这里审查这两种技术的最近历史,在阐明蔓延和流行病学的阐释和流行病学中阐述了大多数医院收养的感染,并讨论了未来的发展。

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