Functional meta-omics provide critical insights into long- and short-read assemblies.
basic_science · Level V
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- Record sourced from PubMed, PMID 34453168.
- Also identified by DOI 10.1093/bib/bbab330 and PMC identifier 8575027.
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Abstract
Real-world evaluations of metagenomic reconstructions are challenged by distinguishing reconstruction artifacts from genes and proteins present in situ. Here, we evaluate short-read-only, long-read-only and hybrid assembly approaches on four different metagenomic samples of varying complexity. We demonstrate how different assembly approaches affect gene and protein inference, which is particularly relevant for downstream functional analyses. For a human gut microbiome sample, we use complementary metatranscriptomic and metaproteomic data to assess the metagenomic data-based protein predictions. Our findings pave the way for critical assessments of metagenomic reconstructions. We propose a reference-independent solution, which exploits the synergistic effects of multi-omic data integration for the in situ study of microbiomes using long-read sequencing data.
Medical subject headings
- Computational Biology
- Metagenome
- Metagenomics