Synthetic long-read sequencing reveals intraspecies diversity in the human microbiome.
basic_science · Level V
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- Record sourced from PubMed, PMID 26655498.
- Also identified by DOI 10.1038/nbt.3416 and PMC identifier 4884093.
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Abstract
Identifying bacterial strains in metagenome and microbiome samples using computational analyses of short-read sequences remains a difficult problem. Here, we present an analysis of a human gut microbiome using TruSeq synthetic long reads combined with computational tools for metagenomic long-read assembly, variant calling and haplotyping (Nanoscope and Lens). Our analysis identifies 178 bacterial species, of which 51 were not found using shotgun reads alone. We recover bacterial contigs that comprise multiple operons, including 22 contigs of >1 Mbp. Furthermore, we observe extensive intraspecies variation within microbial strains in the form of haplotypes that span up to hundreds of Kbp. Incorporation of synthetic long-read sequencing technology with standard short-read approaches enables more precise and comprehensive analyses of metagenomic samples.
Medical subject headings
- High-Throughput Nucleotide Sequencing
- Microbiota
- Species Specificity