失调
生物
微生物学
肠道菌群
发病机制
炎症性肠病
免疫学
疾病
微生物群
布拉迪酵母菌
细菌
遗传学
医学
病理
益生菌
作者
Harry Sokol,Valentin Leducq,Hugues Aschard,Hang‐Phuong Pham,Sarah Jégou,Cécilia Landman,David Cohen,Giuseppina Liguori,Anne Bourrier,Isabelle Nion–Larmurier,Jacques Cosnes,Philippe Seksik,Philippe Langella,David Skurnik,Mathias L. Richard,Laurent Beaugerie
出处
期刊:Gut
[BMJ]
日期:2016-02-03
卷期号:66 (6): 1039-1048
被引量:1311
标识
DOI:10.1136/gutjnl-2015-310746
摘要
OBJECTIVE: The bacterial intestinal microbiota plays major roles in human physiology and IBDs. Although some data suggest a role of the fungal microbiota in IBD pathogenesis, the available data are scarce. The aim of our study was to characterise the faecal fungal microbiota in patients with IBD. DESIGN: Bacterial and fungal composition of the faecal microbiota of 235 patients with IBD and 38 healthy subjects (HS) was determined using 16S and ITS2 sequencing, respectively. The obtained sequences were analysed using the Qiime pipeline to assess composition and diversity. Bacterial and fungal taxa associated with clinical parameters were identified using multivariate association with linear models. Correlation between bacterial and fungal microbiota was investigated using Spearman's test and distance correlation. RESULTS: compared with HS. We also identified disease-specific alterations in diversity, indicating that a Crohn's disease-specific gut environment may favour fungi at the expense of bacteria. The concomitant analysis of bacterial and fungal microbiota showed a dense and homogenous correlation network in HS but a dramatically unbalanced network in IBD, suggesting the existence of disease-specific inter-kingdom alterations. CONCLUSIONS: Besides bacterial dysbiosis, our study identifies a distinct fungal microbiota dysbiosis in IBD characterised by alterations in biodiversity and composition. Moreover, we unravel here disease-specific inter-kingdom network alterations in IBD, suggesting that, beyond bacteria, fungi might also play a role in IBD pathogenesis.
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