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Updated: Jun 18, 2025

Author Spotlight: Exploring Non-Motor Symptoms in Parkinson's Disease
Published on: September 22, 2023
Gut microbiota from patients with Parkinson's disease causes motor deficits in honeybees
Jiaqi Zeng1,2, Yiyuan Li1, Jingshuang Yan1
1Microbiota Division, Department of Gastroenterology and Hepatology, First Medical Center, Chinese PLA General Hospital, Beijing, China.
Objective:
Parkinson's disease (PD) is possibly caused by genetic factors, environmental factors, and gut microbiota dysbiosis. This study aims to explore whether the microbiota contributes to the behavior abnormalities of PD.
Methods:
We transplanted gut microbiota from patients with PD or healthy controls (HC) into microbiota-free honeybees. We also established two more groups, namely the rotenone (ROT) group, in which PD-like symptoms of honeybees were induced by rotenone, and the conventional (CV) group, in which honeybees were colonized with conventional gut microbiota. The climbing assay was performed to assess the motor capabilities of honeybees. Histopathological examination was conducted to evaluate the integrity of gut mucosa. Tyrosine hydroxylase (TH) gene expression levels and dopamine (DA) concentrations in the brain were also examined. Additionally, metagenomics and full-length 16S rRNA analyses were performed to identify alterations in gut microbiota profiles, both in PD patients and honeybees.
Results:
Honeybees in the PD and ROT groups exhibited slower climbing speeds, downregulated TH gene expression, and impaired gut barriers. Both the HC and PD groups of honeybees successfully harbored a portion of gut microbiota from corresponding human donors, and differences in microbial composition were identified. Morganella morganii and Erysipelatoclostridium ramosum exhibited significantly increased relative abundance in the HC group, while Dorea longicatena, Collinsella aerofaciens, Lactococcus garvieae, Holdemanella biformis, Gemmiger formicilis, and Blautia obeum showed significantly increased relative abundance in the PD group. Functional predictions of microbial communities in the PD group indicated an increased synthesis of hydrogen sulfide and methane.
Conclusion:
A novel PD model was induced in honeybees with rotenone and gut microbiota from PD patients. This study linked PD-related behaviors to altered gut microbiota, highlighting a potential gut microbiota-brain axis involvement in PD pathogenesis. We identify previously unrecognized associations of Dorea longicatena, Collinsella aerofaciens, Lactococcus garvieae, Holdemanella biformis, Gemmiger formicilis, and Blautia obeum with PD. Additionally, pathways related to hydrogen sulfide and methane synthesis have been previously suggested as potential contributors to the development of PD, and our research further supports this hypothesis.
Insights
This study reveals that gut microbiota from Parkinson's disease (PD) patients can induce PD-like behaviors in honeybees. Specific gut bacteria and pathways like hydrogen sulfide synthesis are linked to PD pathogenesis.
Area of Science:
- Neuroscience
- Microbiology
- Genetics
Background:
- Parkinson's disease (PD) etiology involves genetic, environmental, and gut microbiota factors.
- Gut microbiota dysbiosis is increasingly implicated in neurodegenerative diseases.
- Understanding the gut-brain axis is crucial for PD pathogenesis research.
Purpose of the Study:
- To investigate the causal role of gut microbiota in PD-related behavioral abnormalities.
- To establish a novel honeybee model for PD research using rotenone and human microbiota.
- To identify specific microbial alterations associated with PD.
Main Methods:
- Gut microbiota transplantation from PD patients and healthy controls into microbiota-free honeybees.
- Induction of PD-like symptoms using rotenone in a separate honeybee group.
- Assessment of motor function (climbing assay), gut integrity, TH gene expression, dopamine levels, and metagenomic/16S rRNA sequencing.
Main Results:
- Honeybees exposed to PD microbiota or rotenone showed impaired motor function and gut barrier integrity.
- Distinct microbial compositions were observed in honeybees receiving microbiota from PD patients versus healthy controls.
- Increased abundance of specific bacteria (e.g., Dorea longicatena, Collinsella aerofaciens) and enhanced hydrogen sulfide/methane synthesis pathways were noted in the PD microbiota group.
Conclusions:
- Gut microbiota from PD patients can induce PD-like behaviors in a honeybee model, supporting the gut-brain axis theory.
- Specific gut bacteria, including Dorea longicatena and Collinsella aerofaciens, are newly associated with PD.
- The study reinforces the role of hydrogen sulfide and methane synthesis pathways in PD development.
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