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Altered human gut virome in patients undergoing antibiotics therapy for Helicobacter pylori

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  • Lingling Wang

    (The University of Hong Kong)

  • Haobin Yao

    (The University of Hong Kong
    Laboratory of Data Discovery for Health, Hong Kong Science Park)

  • Daniel C. Morgan

    (The University of Hong Kong
    Laboratory of Data Discovery for Health, Hong Kong Science Park)

  • Kam Shing Lau

    (The University of Hong Kong)

  • Suet Yi Leung

    (The University of Hong Kong, Pokfulam
    The University of Hong Kong, Queen Mary Hospital, Pokfulam
    The University of Hong Kong, Pokfulam)

  • Joshua W. K. Ho

    (The University of Hong Kong
    Laboratory of Data Discovery for Health, Hong Kong Science Park
    The University of Hong Kong, Pokfulam)

  • Wai K. Leung

    (The University of Hong Kong)

Abstract

Transient gut microbiota alterations have been reported after antibiotic therapy for Helicobacter pylori. However, alteration in the gut virome after H. pylori eradication remains uncertain. Here, we apply metagenomic sequencing to fecal samples of 44 H. pylori-infected patients at baseline, 6-week (N = 44), and 6-month (N = 33) after treatment. Following H. pylori eradication, we discover contraction of the gut virome diversity, separation of virome community with increased community difference, and shifting towards a higher proportion of core virus. While the gut microbiota is altered at 6-week and restored at 6-month, the virome community shows contraction till 6-month after the treatment with enhanced phage-bacteria interactions at 6-week. Multiple courses of antibiotic treatments further lead to lower virus community diversity when compared with treatment naive patients. Our results demonstrate that H. pylori eradication therapies not only result in transient alteration in gut microbiota but also significantly alter the previously less known gut virome community.

Suggested Citation

  • Lingling Wang & Haobin Yao & Daniel C. Morgan & Kam Shing Lau & Suet Yi Leung & Joshua W. K. Ho & Wai K. Leung, 2023. "Altered human gut virome in patients undergoing antibiotics therapy for Helicobacter pylori," Nature Communications, Nature, vol. 14(1), pages 1-11, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-37975-y
    DOI: 10.1038/s41467-023-37975-y
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    1. Himel Mallick & Ali Rahnavard & Lauren J McIver & Siyuan Ma & Yancong Zhang & Long H Nguyen & Timothy L Tickle & George Weingart & Boyu Ren & Emma H Schwager & Suvo Chatterjee & Kelsey N Thompson & Je, 2021. "Multivariable association discovery in population-scale meta-omics studies," PLOS Computational Biology, Public Library of Science, vol. 17(11), pages 1-27, November.
    2. Bas E. Dutilh & Noriko Cassman & Katelyn McNair & Savannah E. Sanchez & Genivaldo G. Z. Silva & Lance Boling & Jeremy J. Barr & Daan R. Speth & Victor Seguritan & Ramy K. Aziz & Ben Felts & Elizabeth , 2014. "A highly abundant bacteriophage discovered in the unknown sequences of human faecal metagenomes," Nature Communications, Nature, vol. 5(1), pages 1-11, December.
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    1. Marwan E. Majzoub & Sudarshan Paramsothy & Craig Haifer & Rohit Parthasarathy & Thomas J. Borody & Rupert W. Leong & Michael A. Kamm & Nadeem O. Kaakoush, 2024. "The phageome of patients with ulcerative colitis treated with donor fecal microbiota reveals markers associated with disease remission," Nature Communications, Nature, vol. 15(1), pages 1-14, December.

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