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Published on: December 16, 2014
The Increased Abundance of Commensal Microbes Decreases Drosophila melanogaster Lifespan through an Age-Related
Hye-Yeon Lee1, Shin-Hae Lee1, Kyung-Jin Min1
1Department of Biological Sciences, Inha University, Incheon 22212, Korea.
Background:
Commensal microbiota live in their host with a symbiotic relationship that affects the host's health and physiology. Many studies showed that microbial load and composition were changed by aging and observed that increasing the abundance and changing the composition of commensal microbes had detrimental effects on host lifespan. We hypothesized that dysbiosis of the intestinal microbiota leads to systemic effects in aging flies as a result of the increased intestinal permeability.
Methods:
We used the fruit fly, Drosophila melanogaster, laboratory strains w, as a model system with many advantages for microbe-host studies.
Results:
The incidence of intestinal dysfunction was increased with age, and intestinal dysfunction increased the permeability of the fly intestine to resident microbes. The lifespan of flies with an intestinal barrier dysfunction was increased by removal of the microbes. Interestingly, some bacteria were also found in the hemolymph of flies with intestinal barrier dysfunction.
Conclusion:
Our findings suggest the possibility that, as the host ages, there is an increase in intestinal permeability, which leads to an increased intestinal microbial load and a reduction in the host lifespan. Our data therefore indicate a connection between commensal microbes and host lifespan.
Insights
Aging increases intestinal permeability in flies, allowing microbes to enter the body. Removing these microbes extends lifespan, suggesting a link between gut health and longevity.
Area of Science:
- Microbiology
- Aging Research
- Genetics
Background:
- Commensal microbiota engage in symbiotic relationships impacting host health.
- Aging alters microbial load and composition, often detrimentally affecting lifespan.
- Intestinal dysbiosis may cause systemic effects via increased intestinal permeability.
Purpose of the Study:
- To investigate the link between aging, intestinal permeability, and host lifespan.
- To determine if gut microbiota dysbiosis contributes to age-related decline.
Main Methods:
- Utilized the fruit fly, *Drosophila melanogaster*, as a model organism.
- Studied microbe-host interactions in aging fly models.
Main Results:
- Intestinal dysfunction and permeability increased with age in fruit flies.
- Removal of microbes extended the lifespan of flies with intestinal barrier dysfunction.
- Bacteria were detected in the hemolymph of flies exhibiting intestinal barrier dysfunction.
Conclusions:
- Increased intestinal permeability with age leads to higher microbial load and reduced lifespan.
- A significant connection exists between commensal microbes and host lifespan.
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Dysbiosis of the Gut Microbiota

