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Computational methods for 16S metabarcoding studies using Nanopore sequencing data

机译:使用纳米孔测序数据进行16S元条形码研究的计算方法

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摘要

Assessment of bacterial diversity through sequencing of 16S ribosomal RNA (16S rRNA) genes has been an approach widely used in environmental microbiology, particularly since the advent of high-throughput sequencing technologies. An additional innovation introduced by these technologies was the need of developing new strategies to manage and investigate the massive amount of sequencing data generated. This situation stimulated the rapid expansion of the field of bioinformatics with the release of new tools to be applied to the downstream analysis and interpretation of sequencing data mainly generated using Illumina technology. In recent years, a third generation of sequencing technologies has been developed and have been applied in parallel and complementarily to the former sequencing strategies. In particular, Oxford Nanopore Technologies (ONT) introduced nanopore sequencing which has become very popular among molecular ecologists. Nanopore technology offers a low price, portability and fast sequencing throughput. This powerful technology has been recently tested for 16S rRNA analyses showing promising results. However, compared with previous technologies, there is a scarcity of bioinformatic tools and protocols designed specifically for the analysis of Nanopore 16S sequences. Due its notable characteristics, researchers have recently started performing assessments regarding the suitability MinION on 16S rRNA sequencing studies, and have obtained remarkable results. Here we present a review of the state-of-the-art of MinION technology applied to microbiome studies, the current possible application and main challenges for its use on 16S rRNA metabarcoding.
机译:通过对16S核糖体RNA(16S rRNA)基因进行测序来评估细菌多样性已广泛用于环境微生物学中,特别是自从高通量测序技术问世以来。这些技术带来的另一项创新是需要开发新的策略来管理和研究生成的大量测序数据。这种情况刺激了生物信息学领域的快速扩展,发布了新的工具,这些工具将用于主要使用Illumina技术生成的测序数据的下游分析和解释。近年来,已经开发了第三代测序技术,并已与以前的测序策略并行和互补地应用。特别是,牛津纳米孔技术公司(ONT)推出了纳米孔测序技术,该技术已在分子生态学家中变得非常流行。纳米孔技术提供了低廉的价格,便携性和快速的测序通量。这项强大的技术最近已通过16S rRNA分析测试,显示出令人鼓舞的结果。但是,与以前的技术相比,缺乏专门用于分析纳米孔16S序列的生物信息学工具和协议。由于其显着的特征,研究人员最近开始在16S rRNA测序研究中对MinION的适用性进行评估,并获得了显着的结果。在这里,我们介绍了应用于微生物组研究的MinION技术的最新进展,其在16S rRNA元条形码上的应用的当前可能的应用和主要挑战。

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