Knief Claudia
Institute of Crop Science and Resource Conservation-Molecular Biology of the Rhizosphere, Faculty of Agriculture, University of Bonn Bonn, Germany.
Front Plant Sci. 2014 May 21;5:216. doi: 10.3389/fpls.2014.00216. eCollection 2014.
Next generation sequencing (NGS) technologies have impressively accelerated research in biological science during the last years by enabling the production of large volumes of sequence data to a drastically lower price per base, compared to traditional sequencing methods. The recent and ongoing developments in the field allow addressing research questions in plant-microbe biology that were not conceivable just a few years ago. The present review provides an overview of NGS technologies and their usefulness for the analysis of microorganisms that live in association with plants. Possible limitations of the different sequencing systems, in particular sources of errors and bias, are critically discussed and methods are disclosed that help to overcome these shortcomings. A focus will be on the application of NGS methods in metagenomic studies, including the analysis of microbial communities by amplicon sequencing, which can be considered as a targeted metagenomic approach. Different applications of NGS technologies are exemplified by selected research articles that address the biology of the plant associated microbiota to demonstrate the worth of the new methods.
在过去几年中,新一代测序(NGS)技术通过能够以比传统测序方法低得多的碱基价格生成大量序列数据,极大地加速了生物科学研究。该领域最近以及正在进行的发展使得解决植物-微生物生物学中的研究问题成为可能,而这些问题在几年前是无法想象的。本综述概述了NGS技术及其在分析与植物相关的微生物方面的用途。批判性地讨论了不同测序系统可能存在的局限性,特别是错误和偏差的来源,并公开了有助于克服这些缺点的方法。重点将放在NGS方法在宏基因组学研究中的应用上,包括通过扩增子测序分析微生物群落,这可被视为一种靶向宏基因组学方法。通过选定的研究文章举例说明了NGS技术的不同应用,这些文章涉及与植物相关的微生物群生物学,以证明新方法的价值。