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Consequences of "zombie-making" and generalist fungal pathogens on carpenter ant microbiota
Sophia Vermeulen1, Anna M Forsman1,2, Charissa de Bekker1,3
1Department of Biology, University of Central Florida, Orlando FL 32816, USA.
Abstract:
The bacterial microbiome of the ant Camponotus floridanus has been well characterized across body regions and maturation levels. However, potential effects of entomopathogens on the gut microbiome, and the fungal communities therein, are yet to be assessed. Additionally, the mycobiome remains often overlooked despite playing a vital role in gut ecology with potential implications for health and infection outcomes. We characterized the effects of two entomopathogens with different infection strategies on the gut micro- and mycobiota of C. floridanus over time; Ophiocordyceps camponoti-floridani and Beauveria bassiana. Specialist, 'zombie-making' O. camponoti-floridani fungi hijack the behavior of C. floridanus ants over three weeks, leading them to find an elevated position and fix themselves in place with their mandibles. This summiting behavior is adaptive to Ophiocordyceps as the ant transports the fungus to conditions that favor fruiting body development, spore production, dispersal, and transmission. In contrast, the generalist entomopathogen B. bassiana infects and kills the ant within a few days, without the induction of obvious fungus-adaptive behaviors. By comparing healthy ants with Beauveria- and Ophiocordyceps-infected ants we aimed to 1) describe the dynamics of the micro- and mycobiome of C. floridanus during infection, and 2) determine if the effects on gut microbiota are distinctive between fungi that have different infection strategies. While Beauveria did not measurably affect the ant host micro-and mycobiome, Ophiocordyceps did, especially for the mycobiome. Moreover, ants that were sampled during Ophiocordyceps-adaptive summiting behavior had a significantly different micro- and mycobiome composition compared to healthy controls and those sampled before and after manipulation took place. This suggests that the host microbiome might have a role to play in the manipulation strategy of Ophiocordyceps.
Insights
The zombie-ant fungus Ophiocordyceps significantly alters the gut microbiome and mycobiome of Camponotus floridanus ants, unlike Beauveria. This fungal manipulation may involve the ant
Area of Science:
- Microbiology
- Mycology
- Insect Pathology
- Ecology
Background:
- The gut microbiome of Camponotus floridanus ants is well-known, but the impact of entomopathogens on gut micro- and mycobiota is understudied.
- The mycobiome, or fungal community, plays a crucial role in gut ecology and infection outcomes, yet it is often overlooked.
Purpose of the Study:
- To investigate the effects of two entomopathogens, Ophiocordyceps camponoti-floridani and Beauveria bassiana, with distinct infection strategies on the gut micro- and mycobiota of C. floridanus.
- To determine if the observed effects on the gut microbiota differ based on the entomopathogen's infection strategy.
Main Methods:
- Comparative analysis of gut micro- and mycobiota in healthy C. floridanus ants versus those infected with O. camponoti-floridani or B. bassiana.
- Time-series sampling and characterization of microbial and fungal communities during different stages of infection.
Main Results:
- Beauveria bassiana infection did not significantly alter the ant's gut micro- or mycobiome.
- Ophiocordyceps camponoti-floridani infection notably impacted the gut mycobiome and, to some extent, the microbiome.
- Ants exhibiting Ophiocordyceps-induced summiting behavior showed significantly altered gut micro- and mycobiome composition compared to controls.
Conclusions:
- The gut microbiome composition of C. floridanus is differentially affected by entomopathogens based on their infection strategies.
- Ophiocordyceps' manipulation of ant behavior may be linked to alterations in the host's gut microbiome.
- The study highlights the importance of considering the mycobiome in entomopathogen-host interactions.
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