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However, dispersal routes and directions of wet forest taxa into the South Pacific remain insufficiently known. We here aimed to establish the most likely routes and directions of plant dispersal into the Southwest Pacific islands.<\/jats:p><\/jats:sec>Location<\/jats:title>Southeast Asia, East Asia, Australia, Southwest Pacific.<\/jats:p><\/jats:sec>Taxon<\/jats:title>Dysoxylum<\/jats:italic> s.l. (Meliaceae). This includes Dysoxylum<\/jats:italic> s.s., Didymocheton<\/jats:italic>, Epicharis<\/jats:italic>, Goniocheton<\/jats:italic>, Pseudocarapa<\/jats:italic>, and Prasoxylon<\/jats:italic>.<\/jats:p><\/jats:sec>Method<\/jats:title>We sampled 75% of the species diversity in Dysoxylum<\/jats:italic> s.l., covering the entire distribution range, all genera and major lineages. Phylogenetic relationships of 149 accessions were reconstructed using Bayesian Evolutionary Analysis and two internal constraints. The dispersal\u2013extinction\u2013cladogenesis variant, founder\u2010event speciation (DEC+J), was used for reconstructing the biogeographic history, and 100 Biogeographical Stochastic Mappings were simulated.<\/jats:p><\/jats:sec>Results<\/jats:title>Dysoxylum<\/jats:italic> s.l. originated and firstly diversified in the western part of its current distribution range (including Indochina) during the Miocene to Pliocene, followed by an overall eastern range expansion towards Malesia, Australia and the Southwest Pacific in the Pliocene.<\/jats:p><\/jats:sec>Main Conclusions<\/jats:title>The south\u2010eastward expansion of lineages into Wallacea and Australia is in temporal agreement with the convergence of the Asian and Australian tectonic plates since the Miocene. Long\u2010distance dispersal is the main mechanism that led to the current distribution. Two dispersal pathways into the Southwest Pacific are identified, (1) through New Guinea and the Solomon Islands to Fiji, and (2) from New Zealand to Fiji. 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