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A Review on the Applications of Next Generation Sequencing Technologies as Applied to Food-Related Microbiome Studies

机译:下一代测序技术在食品相关微生物组研究中的应用综述

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摘要

The development of next generation sequencing (NGS) techniques has enabled researchers to study and understand the world of microorganisms from broader and deeper perspectives. The contemporary advances in DNA sequencing technologies have not only enabled finer characterization of bacterial genomes but also provided deeper taxonomic identification of complex microbiomes which in its genomic essence is the combined genetic material of the microorganisms inhabiting an environment, whether the environment be a particular body econiche (e.g., human intestinal contents) or a food manufacturing facility econiche (e.g., floor drain). To date, 16S rDNA sequencing, metagenomics and metatranscriptomics are the three basic sequencing strategies used in the taxonomic identification and characterization of food-related microbiomes. These sequencing strategies have used different NGS platforms for DNA and RNA sequence identification. Traditionally, 16S rDNA sequencing has played a key role in understanding the taxonomic composition of a food-related microbiome. Recently, metagenomic approaches have resulted in improved understanding of a microbiome by providing a species-level/strain-level characterization. Further, metatranscriptomic approaches have contributed to the functional characterization of the complex interactions between different microbial communities within a single microbiome. Many studies have highlighted the use of NGS techniques in investigating the microbiome of fermented foods. However, the utilization of NGS techniques in studying the microbiome of non-fermented foods are limited. This review provides a brief overview of the advances in DNA sequencing chemistries as the technology progressed from first, next and third generations and highlights how NGS provided a deeper understanding of food-related microbiomes with special focus on non-fermented foods.
机译:下一代测序(NGS)技术的发展使研究人员能够从更广泛和更深入的角度研究和了解微生物的世界。 DNA测序技术的当代进步不仅使细菌基因组更精确地表征,而且还提供了对复杂微生物组的更深入的分类学鉴定,其基因组本质是居住环境的微生物的综合遗传物质,无论环境是否是特定的人体生态系统。 (例如人体肠道内容物)或食品生产设施的生态环境(例如地漏)。迄今为止,16S rDNA测序,宏基因组学和元转录组学是用于食品相关微生物群的分类学鉴定和表征的三种基本测序策略。这些测序策略已使用不同的NGS平台进行DNA和RNA序列鉴定。传统上,16S rDNA测序在理解与食物相关的微生物组的分类学组成方面起着关键作用。最近,宏基因组学方法通过提供物种级别/菌株级别的表征,导致人们对微生物组有了更好的了解。此外,超转录组学方法有助于单个微生物组内不同微生物群落之间复杂相互作用的功能表征。许多研究都强调了在研究发酵食品微生物组中使用NGS技术的重要性。但是,NGS技术在研究非发酵食品微生物组方面的应用是有限的。这篇综述简要概述了随着第一代,第二代和第三代技术的发展,DNA测序化学技术的发展,并着重介绍了NGS如何特别针对非发酵食品,从而提供了对食品相关微生物组的更深入了解。

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