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Published on: February 28, 2018
The effects of combined environmental factors on the intestinal flora of mice based on ground simulation experiments
Peiming Sun1, Jiaqi Yang1,2, Bo Wang3
1Department of General Surgery, Strategic Support Force Medical Center, Chaoyang District, Beijing, 100101, China.
Abstract:
The composition and function of intestinal microbial communities are important for human health. However, these intestinal floras are sensitive to changes in the environment. Adverse changes to intestinal flora can affect the health of astronauts, resulting in difficulties in implementing space missions. We randomly divided mice into three groups and placed each group in either a normal environment, simulated microgravity environment or a combined effects environment, which included simulated microgravity, low pressure and noise. Fecal samples of the mice were collected for follow-up analysis based on metagenomics technology. With the influence of different space environmental factors, the species composition at the phylum and genus levels were significantly affected by the combined effects environment, especially the abundance of the Firmicutes and Bacteroidetes. Furthermore, screening was conducted to identify biomarkers that could be regarded as environmental markers. And there have also been some noticeable changes in the function of intestinal floras. Moreover, the abundance of antibiotic resistance genes (ARGs) was also found to be changed under different environmental conditions, such as bacitracin and vancomycin. The combined effects environment could significantly affect the species composition, function, and the expression of ARGs of intestinal flora of mice which may provide a theoretical basis for space medical supervision and healthcare.
Insights
Spaceflight conditions significantly alter mouse gut microbiota composition and function. The combined effects of simulated microgravity, low pressure, and noise impacted microbial species and antibiotic resistance genes, crucial for astronaut health.
Area of Science:
- Microbiology
- Space Medicine
- Environmental Science
Background:
- Intestinal microbial communities are vital for human health.
- These communities are sensitive to environmental changes, impacting astronaut health and space mission success.
Purpose of the Study:
- To investigate the effects of simulated space environments on the composition and function of mouse intestinal flora.
- To identify potential biomarkers and understand changes in antibiotic resistance genes (ARGs) under space-related stressors.
Main Methods:
- Mice were exposed to normal, simulated microgravity, or a combined environment (microgravity, low pressure, noise).
- Fecal samples were analyzed using metagenomics technology.
- Species composition, functional changes, and ARGs were assessed.
Main Results:
- The combined environment significantly altered the species composition at phylum and genus levels, notably affecting Firmicutes and Bacteroidetes.
- Noticeable changes in intestinal flora function and the abundance of ARGs (e.g., bacitracin, vancomycin) were observed.
- Biomarkers indicative of environmental changes were identified.
Conclusions:
- The combined space environmental factors significantly impact the species composition, function, and ARGs of the intestinal flora in mice.
- These findings provide a theoretical basis for space medical supervision and healthcare strategies for astronauts.
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