Gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity
Gut microbiome alterations have been linked to inflammatory bowel disease (IBD) and obesity. Here, the authors characterize the metagenomes of four large human cohorts and perform co-abundance network analysis showing that dysbiosis in disease is marked by the altered co-abundance relationships, sug...
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Nature Portfolio
2020
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oai:doaj.org-article:da603f99168743a3ba6b2f114c36782d2021-12-02T15:08:41ZGut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity10.1038/s41467-020-17840-y2041-1723https://doaj.org/article/da603f99168743a3ba6b2f114c36782d2020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17840-yhttps://doaj.org/toc/2041-1723Gut microbiome alterations have been linked to inflammatory bowel disease (IBD) and obesity. Here, the authors characterize the metagenomes of four large human cohorts and perform co-abundance network analysis showing that dysbiosis in disease is marked by the altered co-abundance relationships, suggesting that pathway coabundance networks are more heterogeneous than species network.Lianmin ChenValerie CollijMartin JaegerInge C. L. van den MunckhofArnau Vich VilaAlexander KurilshikovRanko GacesaTrishla SinhaMarije OostingLeo A. B. JoostenJoost H. W. RuttenNiels P. RiksenRamnik J. XavierFolkert KuipersCisca WijmengaAlexandra ZhernakovaMihai G. NeteaRinse K. WeersmaJingyuan FuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020) |
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Science Q Lianmin Chen Valerie Collij Martin Jaeger Inge C. L. van den Munckhof Arnau Vich Vila Alexander Kurilshikov Ranko Gacesa Trishla Sinha Marije Oosting Leo A. B. Joosten Joost H. W. Rutten Niels P. Riksen Ramnik J. Xavier Folkert Kuipers Cisca Wijmenga Alexandra Zhernakova Mihai G. Netea Rinse K. Weersma Jingyuan Fu Gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity |
description |
Gut microbiome alterations have been linked to inflammatory bowel disease (IBD) and obesity. Here, the authors characterize the metagenomes of four large human cohorts and perform co-abundance network analysis showing that dysbiosis in disease is marked by the altered co-abundance relationships, suggesting that pathway coabundance networks are more heterogeneous than species network. |
format |
article |
author |
Lianmin Chen Valerie Collij Martin Jaeger Inge C. L. van den Munckhof Arnau Vich Vila Alexander Kurilshikov Ranko Gacesa Trishla Sinha Marije Oosting Leo A. B. Joosten Joost H. W. Rutten Niels P. Riksen Ramnik J. Xavier Folkert Kuipers Cisca Wijmenga Alexandra Zhernakova Mihai G. Netea Rinse K. Weersma Jingyuan Fu |
author_facet |
Lianmin Chen Valerie Collij Martin Jaeger Inge C. L. van den Munckhof Arnau Vich Vila Alexander Kurilshikov Ranko Gacesa Trishla Sinha Marije Oosting Leo A. B. Joosten Joost H. W. Rutten Niels P. Riksen Ramnik J. Xavier Folkert Kuipers Cisca Wijmenga Alexandra Zhernakova Mihai G. Netea Rinse K. Weersma Jingyuan Fu |
author_sort |
Lianmin Chen |
title |
Gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity |
title_short |
Gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity |
title_full |
Gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity |
title_fullStr |
Gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity |
title_full_unstemmed |
Gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity |
title_sort |
gut microbial co-abundance networks show specificity in inflammatory bowel disease and obesity |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/da603f99168743a3ba6b2f114c36782d |
work_keys_str_mv |
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