Western Ghats Myrtaceae are not Gondwana elements but likely dispersed from south-east Asia
Ray, R.; Chattopadhyay, B.; Garg, K. M.; Ramachandra, T. V.; Ray, A.
Show abstract
Gondwana break-up is one of the key sculptors of the global biogeographic pattern including Indian subcontinent. Myrtaceae, a Gondwana family, demonstrates a high diversity across Indian Western Ghats. A rich paleo-records in Deccan Intertrappean bed in India strive to reconcile two contending hypothesis of origin and diversification of Myrtaceae in India, namely Gondwana elements floated on peninsular India or lineages invading from south-east Asia. In this study, we have reconstructed the biogeographic history of Myrtaceae of Western Ghats of India combining fossil-calibrated phylogeny, ancestral area reconstruction, and comparing various dispersal models. Phylogenetic reconstructions divided lineages into multiple clades at the tribal level that mostly is in agreement with previous descriptions. Dated tree indicated a presumable Gondwanan origin of Myrtaceae (95.7 Ma). The Western Ghats taxa are relatively younger and seem to have arrived either through long-distance oceanic dispersal in middle Eocene (Rhodomyrtus tomentosa), and Miocene (Eugenia) or through major overland dispersals throughout Miocene (Syzygium). However, late Cretaceous fossilsin India lends support to the existence of proto-Myrtaceae on floating peninsular India. Taken together, we conclude that Myrtaceae lineages on the biotic ferry were perhaps extirpated by Deccan volcanism leaving a little or no trace of living Gondwanan link, while the Western Ghats was likely enriched by dispersed elements either from south-east Asia or from South America.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Relict groups of spiny frogs indicate Late Paleogene-Early Neogene trans-Tibet dispersal of thermophile faunal elements 97%
- Shedding light on the Ophel biome: The Trans-Tethyan phylogeography of the sulfide shrimp Tethysbaena (Peracarida: Thermosbaenacea) in the Levant 95%
- Allopatric speciation is more prevalent than parapatric ecological divergence in a recent high-Andean diversification (Asteraceae: Linochilus) 93%
Similar papers in this journal
- The evolutionary history of the ancient weevil family Belidae (Coleoptera: Curculionoidea) reveals the marks of Gondwana breakup and major floristic turnovers, including the rise of angiosperms 95%
- Adulis and the transshipment of baboons during classical antiquity 93%
- Phylogenomic and mitogenomic data can accelerate inventorying of tropical beetles during the current biodiversity crisis 93%
Similar papers in this journal
- Plastid phylogenomics resolves ambiguous relationships within the orchid family and provides a solid timeframe for biogeography and macroevolution 93%
- Ecological changes have driven biotic exchanges across the Indian Ocean 91%
- Faecal DNA to the rescue: Shotgun sequencing of non-invasive samples reveals two subspecies of Southeast Asian primates to be Critically Endangered species 91%
Similar papers in this journal
- Genetic affinities and adaptation of the South West coast populations of India 92%
- Mitochondrial architecture rearrangements produce asymmetrical nonadaptive mutational pressures that subvert the phylogenetic reconstruction in Isopoda 92%
- Taxonomic Uncertainty and the Anomaly Zone: Phylogenomics Disentangle a Rapid Radiation to Resolve Contentious Species (Gila robusta complex) in the Colorado River 91%
Similar papers in this journal
- Taxonomic, geographic, and phylogenetic patterns in the conservation status of the squamate reptiles (Reptilia: Squamata) of Colombia 90%
- Neglected predatory insects trigger potential Key Biodiversity Areas in threatened coastal habitats 89%
- Impacts of oil palm plantations expansion on the distribution of terrestrial mammals in South-East Asia 89%
"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.