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Annotated bacterial chromosomes from frame-shift-corrected long-read metagenomic data

机译:来自框架移位校正的长读成型组织数据的注释细菌染色体

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Short-read sequencing technologies have long been the work-horse of microbiome analysis. Continuing technological advances are making the application of long-read sequencing to metagenomic samples increasingly feasible. We demonstrate that whole bacterial chromosomes can be obtained from an enriched community, by application of MinION sequencing to a sample from an EBPR bioreactor, producing 6 Gb of sequence that assembles into multiple closed bacterial chromosomes. We provide a simple pipeline for processing such data, which includes a new approach to correcting erroneous frame-shifts. Advances in long-read sequencing technology and corresponding algorithms will allow the routine extraction of whole chromosomes from environmental samples, providing a more detailed picture of individual members of a microbiome.
机译:短读测序技术长期以来一直是微生物组分析的工作马。持续技术进步正在使长读测序应用于Metagenomic样品的应用越来越可行。我们证明整个细菌染色体可以通过将切碎的序列从EBPR生物反应器施用于来自EBPR生物反应器的样品来从富集的群体中获得,产生6GB的组合成多个闭合细菌染色体。我们提供了一种用于处理此类数据的简单管道,其包括纠正错误帧移位的新方法。长读取测序技术和相应算法的进步将允许从环境样品中常规提取整个染色体,提供微生物组的个体成员的更详细的图像。

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