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Madagascar as an evolutionary source for the Paleotropical flora: New insights from the biogeography of Grewia (Malvaceae)

Preprint Created on 05 Sep 2026 bioRxiv

Oceanic islands are natural laboratories for investigating the processes that generate, maintain, and redistribute biodiversity through time. An ideal flowering plant system to investigate these processes is Grewia L. (Malvaceae, Grewioideae), comprising ca. 283 species, of which nearly 30% are endemic to Madagascar, where they display considerable morphological diversity. Using Angiosperms353 target-capture sequencing for 171 accessions (119 Grewia spp.), we reconstructed the first densely sampled phylogeny of Grewia and performed divergence-time estimation, diversification analyses, and ancestral-range reconstruction. Our results support a Malagasy origin of the crown group around 27 million years ago, followed by extensive in situ diversification of Grewia. Repeated dispersal events from Madagascar to continental Africa subsequently contributed to the establishment of new African lineages, whereas colonization of the western Indian Ocean islands was more recent and resulted in anagenetic dispersals. Africa acted as the principal source of dispersal toward Arabia and into tropical Asia, suggesting the presence of a Miocene Afro-Arabian migration corridor under warm and humid conditions. Subsequent eastward dispersal from Asia to Australia is consistent with the stepping stone pathway provided by the Sunda and Sahul regions during the Miocene. This complex dispersal history was likely aided by fleshy fruits adapted for endozoochory. Our new evolutionary framework provides a robust basis for future taxonomic revision of this morphologically and ecologically diverse genus, and for identifying which characters have contributed to its exceptional diversification.

Jourdain-Fievet, L., Hanes, M. M., Karimi, N., Dorr, L. J., Wurdack, K. J.

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