Abiotic factors are the primary determinants of endemic Hawaiian Drosophila microbiome assembly
Medeiros, M. J.; Schoville, S. D.; Price, D. K.; Yew, J. Y.
Show abstract
The Hawaiian Drosophila radiation exemplifies rapid adaptation and species diversification. Many factors have been attributed to these phenomena, including allopatry, sexual selection, and ecological specialization. In recent years, the microbiome has come to the forefront as an important driver of adaptation that is capable of facilitating host survivorship, enhancing resilience to local environmental challenges, and enabling the use of different dietary resources. To determine how microbial communities assemble in natural populations and potentially contribute to the rapid adaptation of Hawaiian drosophilids, we conducted a survey of bacterial and fungal communities from over 500 wild flies collected from across six islands of the Hawaiian archipelago. These samples represent a breadth of host plant specializations, habitats, lifestyles, and endemicity. Our findings reveal that microbiome assembly is largely driven by abiotic factors including elevation, temperature, rainfall, and evapotranspiration, but is not strongly constrained by phylogenetic relatedness. Identical species inhabiting two separate locations exhibited different microbiomes. By contrast, distantly related species inhabiting the same site had more similar microbiomes. The microbiomes of native species also differ from recently introduced, non-native Drosophila in terms of diversity, composition, and function. Given the myriad roles of the microbiome in nutrition, reproduction, and mate choice, these results support a role for the microbiome in the remarkable ecological divergence of Hawaiian Drosophila.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A holobiont view of island biogeography: unraveling patterns driving the nascent diversification of a Hawaiian spider and its microbial associates 95%
- Local adaptation and spatiotemporal patterns of genetic diversity revealed by repeated sampling of Caenorhabditis elegans across the Hawaiian Islands 94%
- Host species identity shapes the diversity and structure of insect microbiota 94%
Similar papers in this journal
- Seasonal and environmental factors contribute to the variation in the gut microbiome: a large-scale study of a small bird 94%
- A time-lagged association between the gut microbiome, nestling weight and nestling survival in wild great tits 93%
- Microbial associations and spatial proximity predict North American moose (Alces alces) gastrointestinal community composition 91%
Similar papers in this journal
- DNA metabarcoding successfully quantifies relative abundances of arthropod taxa in songbird diets: a validation study using camera-recorded diets 93%
- Latitudinal clines in climate and sleep patterns shape disease outcomes in Drosophila melanogaster infected by Metarhizium anisopliae 92%
- Understanding the mechanisms underlying microbiota variation in wild tick populations 92%
Similar papers in this journal
Similar papers in this journal
"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.