Human gut microbiome gene co-expression network reveals a loss in taxonomic and functional diversity in Parkinson's disease.

IF 9.2 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Rémy Villette, Polina V Novikova, Cédric C Laczny, Brit Mollenhauer, Patrick May, Paul Wilmes
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Abstract

Gut microbiome alterations are linked to various diseases, including neurodegeneration, but their ecological and functional impacts remain unclear. Using integrated multi-omics (metagenomics and metatranscriptomics), we analyse microbiome gene co-expression networks in Parkinson's disease (PD) and healthy controls (HC). We observe a significant depletion of hub genes in PD, including genes involved in secondary bile acid biosynthesis, bacterial microcompartments (BMCs), polysaccharides transport and flagellar assembly (FA). Blautia, Roseburia, Faecalibacterium and Anaerobutyricum genera are the main contributors to these functions, showing significantly lower expression in PD. Additionally, we identify a strong correlation between BMC and FA expression, and an apparent dysregulation in cross-feeding between commensals in PD. Finally, PD also exhibits reduced gene expression diversity compared to HC, whereby higher gene expression correlates with greater diversity. We identify disruptions in gut metabolic functions, at both taxonomic and functional level, and microbiome-wide ecological features, highlighting targets for future gut microbiome restoration efforts.

人类肠道微生物组基因共表达网络揭示了帕金森病分类学和功能多样性的丧失。
肠道微生物组的改变与多种疾病有关,包括神经退行性疾病,但其生态和功能影响尚不清楚。利用综合多组学(宏基因组学和亚转录组学),我们分析了帕金森病(PD)和健康对照(HC)中微生物组基因共表达网络。我们观察到PD中中枢基因的显著缺失,包括涉及次级胆汁酸生物合成、细菌微室(BMCs)、多糖运输和鞭毛组装(FA)的基因。Blautia、Roseburia、Faecalibacterium和Anaerobutyricum属是这些功能的主要贡献者,在PD中表达量显著降低。此外,我们发现BMC和FA表达之间存在很强的相关性,并且PD中共生体之间的交叉摄食明显失调。最后,与HC相比,PD也表现出基因表达多样性的降低,因此更高的基因表达与更大的多样性相关。我们在分类学和功能水平上发现了肠道代谢功能的中断,以及微生物群的生态特征,强调了未来肠道微生物群恢复工作的目标。
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来源期刊
npj Biofilms and Microbiomes
npj Biofilms and Microbiomes Immunology and Microbiology-Microbiology
CiteScore
12.10
自引率
3.30%
发文量
91
审稿时长
9 weeks
期刊介绍: npj Biofilms and Microbiomes is a comprehensive platform that promotes research on biofilms and microbiomes across various scientific disciplines. The journal facilitates cross-disciplinary discussions to enhance our understanding of the biology, ecology, and communal functions of biofilms, populations, and communities. It also focuses on applications in the medical, environmental, and engineering domains. The scope of the journal encompasses all aspects of the field, ranging from cell-cell communication and single cell interactions to the microbiomes of humans, animals, plants, and natural and built environments. The journal also welcomes research on the virome, phageome, mycome, and fungome. It publishes both applied science and theoretical work. As an open access and interdisciplinary journal, its primary goal is to publish significant scientific advancements in microbial biofilms and microbiomes. The journal enables discussions that span multiple disciplines and contributes to our understanding of the social behavior of microbial biofilm populations and communities, and their impact on life, human health, and the environment.
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