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Genome binning of viral entities from bulk metagenomics data

Author

Listed:
  • Joachim Johansen

    (University of Copenhagen
    Broad Institute of MIT and Harvard)

  • Damian R. Plichta

    (Broad Institute of MIT and Harvard)

  • Jakob Nybo Nissen

    (University of Copenhagen
    Viral & Microbial Special diagnostics)

  • Marie Louise Jespersen

    (University of Copenhagen
    Technical University of Denmark)

  • Shiraz A. Shah

    (Herlev and Gentofte Hospital, University of Copenhagen)

  • Ling Deng

    (University of Copenhagen)

  • Jakob Stokholm

    (Herlev and Gentofte Hospital, University of Copenhagen
    University of Copenhagen)

  • Hans Bisgaard

    (Herlev and Gentofte Hospital, University of Copenhagen)

  • Dennis Sandris Nielsen

    (University of Copenhagen)

  • Søren J. Sørensen

    (University of Copenhagen)

  • Simon Rasmussen

    (University of Copenhagen)

Abstract

Despite the accelerating number of uncultivated virus sequences discovered in metagenomics and their apparent importance for health and disease, the human gut virome and its interactions with bacteria in the gastrointestinal tract are not well understood. This is partly due to a paucity of whole-virome datasets and limitations in current approaches for identifying viral sequences in metagenomics data. Here, combining a deep-learning based metagenomics binning algorithm with paired metagenome and metavirome datasets, we develop Phages from Metagenomics Binning (PHAMB), an approach that allows the binning of thousands of viral genomes directly from bulk metagenomics data, while simultaneously enabling clustering of viral genomes into accurate taxonomic viral populations. When applied on the Human Microbiome Project 2 (HMP2) dataset, PHAMB recovered 6,077 high-quality genomes from 1,024 viral populations, and identified viral-microbial host interactions. PHAMB can be advantageously applied to existing and future metagenomes to illuminate viral ecological dynamics with other microbiome constituents.

Suggested Citation

  • Joachim Johansen & Damian R. Plichta & Jakob Nybo Nissen & Marie Louise Jespersen & Shiraz A. Shah & Ling Deng & Jakob Stokholm & Hans Bisgaard & Dennis Sandris Nielsen & Søren J. Sørensen & Simon Ras, 2022. "Genome binning of viral entities from bulk metagenomics data," Nature Communications, Nature, vol. 13(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-28581-5
    DOI: 10.1038/s41467-022-28581-5
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    Cited by:

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    2. Shicong Du & Xinzhao Tong & Alvin C. K. Lai & Chak K. Chan & Christopher E. Mason & Patrick K. H. Lee, 2023. "Highly host-linked viromes in the built environment possess habitat-dependent diversity and functions for potential virus-host coevolution," Nature Communications, Nature, vol. 14(1), pages 1-15, December.
    3. Wanli He & Jakob Russel & Franziska Klincke & Joseph Nesme & Søren Johannes Sørensen, 2024. "Insights into the ecology of the infant gut plasmidome," Nature Communications, Nature, vol. 15(1), pages 1-13, December.
    4. Wenxiu Wang & Weizhi Song & Marwan E. Majzoub & Xiaoyuan Feng & Bu Xu & Jianchang Tao & Yuanqing Zhu & Zhiyong Li & Pei-Yuan Qian & Nicole S. Webster & Torsten Thomas & Lu Fan, 2024. "Decoupling of strain- and intrastrain-level interactions of microbiomes in a sponge holobiont," Nature Communications, Nature, vol. 15(1), pages 1-17, December.
    5. Liyun An & Xinwu Liu & Jianwei Wang & Jinbo Xu & Xiaoli Chen & Xiaonan Liu & Bingxin Hu & Yong Nie & Xiao-Lei Wu, 2024. "Global diversity and ecological functions of viruses inhabiting oil reservoirs," Nature Communications, Nature, vol. 15(1), pages 1-16, December.

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