A toxic environment selects for specialist microbiome in poison frogs
Caty, S. N.; Alvarez-Buylla, A.; Vasek, C.; Tapia, E. E.; Martin, N. A.; McLaughlin, T.; Weber, P. K.; Mayali, X.; Coloma, L. A.; Morris, M. M.; O'Connell, L. A.
Show abstract
Shifts in microbiome community composition can have large effects on host health. It is therefore important to understand how perturbations, like those caused by the introduction of exogenous chemicals, modulate microbiome community composition. In poison frogs within the family Dendrobatidae, the skin microbiome is exposed to the alkaloids that the frogs sequester from their diet and use for defense. Given the demonstrated antimicrobial effects of these poison frog alkaloids, these compounds may be structuring the skin microbial community. To test this, we first characterized microbial communities from chemically defended and closely related non-defended frogs from Ecuador. Then we conducted a laboratory experiment to monitor the effect of the alkaloid decahydroquinoline (DHQ) on the microbiome of a single frog species. In both the field and lab experiments, we found that alkaloid-exposed microbiomes are more species rich and phylogenetically diverse, with an increase in rare taxa. To better understand the strain-specific behavior in response to alkaloids, we cultured microbial strains from poison frog skin and found the majority of strains exhibited either enhanced growth or were not impacted by the addition of DHQ. Additionally, stable isotope tracing coupled to nanoSIMS suggests that some of these strains are able to metabolize DHQ. Taken together, these data suggest that poison frog chemical defenses open new niches for skin-associated microbes with specific adaptations, including the likely metabolism of alkaloids, that enable their survival in this toxic environment. This work helps expand our understanding of how exposure to exogenous compounds like alkaloids can impact host microbiomes.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Antimicrobial activity of iron-depriving pyoverdines against human opportunistic pathogens 93%
- Effects of parental care on skin microbial community composition in poison frogs 93%
- Environmental DNA from archived leaves reveals widespread temporal turnover and biotic homogenization in forest arthropod communities 92%
Similar papers in this journal
Similar papers in this journal
- Disentangling the relative roles of vertical transmission, subsequent colonizations and diet on cockroach microbiome assembly 94%
- Herptile gut microbiomes: a natural system to study multi-kingdom interactions between filamentous fungi and bacteria 93%
- Trachymyrmex septentrionalis ant microbiome assembly is unique to individual colonies and castes. 93%
Similar papers in this journal
- Targeted manipulation of abundant and rare taxa in the Daphnia magna microbiota with antibiotics impacts host fitness differentially 94%
- Microbiome depletion and recovery in the sea anemone, Exaiptasia diaphana, following antibiotic exposure 93%
- Ecological Interactions Drive Metabolomic Diversification in Amazonian Pseudonocardia Symbionts 93%
Similar papers in this journal
- Syntrophy via interspecies H2 transfer between Christensenella and Methanobrevibacter underlies their global co-occurrence in the human gut 93%
- Nutrition induced changes in the microbiota can cause dysbiosis and disease development 92%
- Bacterial secondary metabolite biosynthetic potential in soil varies with phylum, depth, and vegetation type 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.