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Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Resident Microbiome Disruption with Antibiotics Enhances Virulence of a Colonizing Pathogen
Courtney A Thomason1, Nathan Mullen2, Lisa K Belden3
1Department of Biological Sciences, Virginia Tech, Blacksburg, VA, USA. couthoma@vt.edu.
Abstract:
There is growing evidence that symbiotic microbes play key roles in host defense, but less is known about how symbiotic microbes mediate pathogen-induced damage to hosts. Here, we use a natural wildlife disease system, house finches and the conjunctival bacterial pathogen Mycoplasma gallisepticum (MG), to experimentally examine the impact of the ocular microbiome on host damage and pathogen virulence factors during infection. We disrupted the ocular bacterial community of healthy finches using an antibiotic that MG is intrinsically resistant to, then inoculated antibiotic- and sham-treated birds with MG. House finches with antibiotic-disrupted ocular microbiomes had more severe MG-induced conjunctival inflammation than birds with unaltered microbiomes, even after accounting for differences in conjunctival MG load. Furthermore, MG cultures from finches with disrupted microbiomes had increased sialidase enzyme and cytadherence activity, traits associated with enhanced virulence in Mycoplasmas, relative to isolates from sham-treated birds. Variation in sialidase activity and cytadherence among isolates was tightly linked with degree of tissue inflammation in hosts, supporting the consideration of these traits as virulence factors in this system. Overall, our results suggest that microbial dysbiosis can result in enhanced virulence of colonizing pathogens, with critical implications for the health of wildlife, domestic animals, and humans.
Insights
Disrupting the ocular microbiome in house finches worsened Mycoplasma gallisepticum (MG) infections and increased pathogen virulence. This highlights how microbial dysbiosis impacts host health and disease severity.
Area of Science:
- Microbiology
- Ecology
- Veterinary Medicine
Background:
- Symbiotic microbes are crucial for host defense.
- The role of symbiotic microbes in mediating pathogen-induced damage is less understood.
- Wildlife disease systems offer valuable insights into host-microbe-pathogen interactions.
Purpose of the Study:
- To investigate the impact of the ocular microbiome on host damage during Mycoplasma gallisepticum (MG) infection in house finches.
- To determine if disrupting the ocular microbiome affects MG virulence factors.
- To explore the link between microbial dysbiosis and enhanced pathogen virulence.
Main Methods:
- Disrupted ocular bacterial communities in healthy house finches using a specific antibiotic.
- Inoculated antibiotic- and sham-treated birds with MG.
- Assessed conjunctival inflammation, MG load, and MG virulence factors (sialidase activity, cytadherence).
Main Results:
- Birds with antibiotic-disrupted microbiomes exhibited more severe MG-induced conjunctival inflammation.
- MG isolates from birds with disrupted microbiomes showed increased sialidase and cytadherence activity.
- These virulence traits were linked to the degree of host tissue inflammation.
Conclusions:
- Microbial dysbiosis can lead to increased virulence of colonizing pathogens.
- The ocular microbiome plays a protective role against MG-induced damage.
- Findings have implications for the health of wildlife, domestic animals, and humans.
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