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Updated: Aug 16, 2025

Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
Inflammatory microbes and genes as potential biomarkers of Parkinson's disease
Shiqing Nie1,2, Jichen Wang1,2, Ye Deng2,3
1State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.
Abstract:
As the second-largest neurodegenerative disease in the world, Parkinson's disease (PD) has brought a severe economic and medical burden to our society. Growing evidence in recent years suggests that the gut microbiome may influence PD, but the exact pathogenesis of PD remains unclear. In addition, the current diagnosis of PD could be inaccurate and expensive. In this study, the largest meta-analysis currently of the gut microbiome in PD was analyzed, including 2269 samples by 16S rRNA gene and 236 samples by shotgun metagenomics, aiming to reveal the connection between PD and gut microbiome and establish a model to predict PD. The results showed that the relative abundances of potential pro-inflammatory bacteria, genes and pathways were significantly increased in PD, while potential anti-inflammatory bacteria, genes and pathways were significantly decreased. These changes may lead to a decrease in potential anti-inflammatory substances (short-chain fatty acids) and an increase in potential pro-inflammatory substances (lipopolysaccharides, hydrogen sulfide and glutamate). Notably, the results of 16S rRNA gene and shotgun metagenomic analysis have consistently identified five decreased genera (Roseburia, Faecalibacterium, Blautia, Lachnospira, and Prevotella) and five increased genera (Streptococcus, Bifidobacterium, Lactobacillus, Akkermansia, and Desulfovibrio) in PD. Furthermore, random forest models performed well for PD prediction based on 11 genera (accuracy > 80%) or 6 genes (accuracy > 90%) related to inflammation. Finally, a possible mechanism was presented to explain the pathogenesis of inflammation leading to PD. Our results provided further insights into the prediction and treatment of PD based on inflammation.
Insights
Parkinson's disease (PD) is linked to gut microbiome changes, with increased pro-inflammatory bacteria and decreased anti-inflammatory ones. This study analyzed microbiome data to predict PD accurately using inflammation-related genes and bacteria.
Area of Science:
- Neuroscience
- Microbiology
- Genetics
Background:
- Parkinson's disease (PD) is a major neurodegenerative disorder with unclear pathogenesis.
- Current PD diagnosis methods are often inaccurate and costly.
- The gut microbiome's role in PD is increasingly recognized but not fully understood.
Approach:
- Conducted the largest meta-analysis of the gut microbiome in PD, analyzing 2269 samples via 16S rRNA gene sequencing and 236 via shotgun metagenomics.
- Identified significant alterations in the abundance of pro-inflammatory and anti-inflammatory bacteria, genes, and pathways in PD patients.
- Developed random forest models for PD prediction using microbial and genetic markers.
Key Points:
- Increased relative abundance of pro-inflammatory bacteria, genes, and pathways observed in PD.
- Decreased relative abundance of anti-inflammatory bacteria, genes, and pathways noted in PD.
- Consistent identification of five decreased (Roseburia, Faecalibacterium, Blautia, Lachnospira, Prevotella) and five increased (Streptococcus, Bifidobacterium, Lactobacillus, Akkermansia, Desulfovibrio) genera in PD.
Conclusions:
- Gut microbiome dysbiosis, characterized by inflammation, contributes to PD pathogenesis.
- Predictive models based on gut microbiome data achieved high accuracy (>80% for genera, >90% for genes).
- Findings offer insights into novel diagnostic and therapeutic strategies for PD targeting inflammation.
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