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Bacillus predominates in the Ophiocordyceps pseudolloydii-infected ants, and it potentially improves protection and utilization of the host cadavers. | LitMetric

AI Article Synopsis

  • The study examines how parasitic fungi influence the bacterial communities in the cadavers of infected ants, specifically focusing on the ant species Dolichoderus thoracicus and the fungus Ophiocordyceps pseudolloydii.
  • It was found that Bacillus cereus/thuringiensis dominates these bacterial communities, with strains exhibiting hemolytic properties and the ability to produce enzymes for breaking down ant tissue, while also demonstrating lethal effects on nematodes.
  • Despite the expectation that certain bacteria would show tolerance to naphthoquinones (antibacterial compounds produced by the fungi), the findings suggest otherwise, highlighting the need for further research on the microbial interactions in environments impacted by O. pseudolloydii.

Article Abstract

The bacterial communities that colonize the cadaver environment of insects infected and killed by parasitic fungi can be selected by the sympatric fungi and provide novel impacts. In this study, we found that Bacillus cereus/thuringiensis predominate the bacterial community in Dolichoderus thoracicus ant cadavers colonized by O. pseudolloydii. The most predominant bacterial strains in these ant cadavers were hemolytic and able to produce hydrolytic enzymes for digesting the ant tissue. A relatively intense lethal effect on the co-cultured nematode was displayed by a hemolytic strain. Moreover, the antagonistic effect against pathogenic fungi detected in the bacteria sympatric with O. pseudolloydii was reported here. Naphthoquinones have been shown to confer antibacterial activities and produced by the ant-pathogenic Ophiocordyceps fungi. However, our results did not show the naphthoquinone tolerance we expected to be detected in the bacteria from the ant infected by O. pseudolloydii. The bacterial diversity in the samples associated with O. pseudolloydii infected ants as revealed in this study will be a step forward to the understanding of the roles playing by the microbial community in the native habitats of O. pseudolloydii.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9816197PMC
http://dx.doi.org/10.1007/s00203-022-03385-9DOI Listing

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