Neoisoptera repetitively colonised Madagascar after the Middle Miocene climatic optimum
Wang, M.; Hellemans, S.; Bucek, A.; Kanao, T.; Arora, J.; Clitheroe, C.; Rafanomezantsoa, J.-J.; Fisher, B.; Scheffrahn, R.; Sillam-Dusses, D.; Roisin, Y.; Sobotnik, J.; bourguignon, t.
Show abstract
Madagascar is home to many endemic plant and animal species owing to its ancient isolation from other landmasses. This unique fauna includes several lineages of termites, a group of insects known for their key role in organic matter decomposition in many terrestrial ecosystems. How and when termites colonised Madagascar remains unknown. In this study, we used 601 mitochondrial genomes, 93 of which were generated from Madagascan samples, to infer the global historical biogeography of Neoisoptera, a lineage containing upwards of 80% of described termite species. Our results indicate that Neoisoptera colonised Madagascar between seven to ten times independently during the Miocene, between 8.4-16.6 Ma (95% HPD: 6.1-19.9 Ma). This timing matches that of the colonization of Australia by Neoisoptera. Furthermore, the taxonomic composition of the Neoisopteran fauna of Madagascar and Australia are strikingly similar, with Madagascar harbouring an additional two lineages absent from Australia. Therefore, akin to Australia, Neoisoptera colonised Madagascar during the global expansion of grasslands, possibly helped by the ecological opportunities arising from the spread of this new biome.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Rewinding the molecular clock in the genus Carabus (Coleoptera: Carabidae) in light of fossil evidence and the Gondwana split: a re-analyses. 95%
- Phylogenomics supports a Cenozoic rediversification of the "living fossil" Isoetes 94%
- What does mitogenomics tell us about the evolutionary history of the Drosophila buzzatii cluster (repleta group) 93%
Similar papers in this journal
- Primate phylogenomics uncovers multiple rapid radiations and ancient interspecific introgression 95%
- A phylogeny-informed characterisation of global tetrapod traits addresses data gaps and biases 94%
- Population genetic analysis of Ophidiomyces ophidiicola, the causative agent of snake fungal disease, indicates recent introductions to the USA 94%
"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.