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Tiatragul, S.

Publications and source records attributed to Tiatragul, S..

2 recordsLinked to original sources

Aridification and habitat shifts drove diversification in Australian diplodactylid geckos

Continental radiations record the long-term interplay between environmental change, ecological opportunity, and lineage diversification across large geographic scales. The gecko family Diplodactyli-dae represents one such radiation with [~]200 species distributed across Australia, New Caledonia, and Aotearoa New Zealand, occupying ecological forms ranging from burrow-dwelling desert specialists to canopy climbers, and diversifying over a [~]45 Ma history shaped by dramatic continental environ-mental change. Using [~]5000 nuclear loci, we reconstructed phylogenetic relationships and divergence times, estimated ancestral ecology and biomes using newly generated biome-through-time maps for Australia, and modeled the effects of ecological states on diversification and morphology. Crown diplodactylids originated in the mid-Eocene ([~]45 Ma), with the core Australian clade radiating in the Oligocene ([~]28 Ma), substantially younger than previous estimates. Ancestral state estimation indicated arboreal origins in mesic environments, followed by repeated transitions into open habitats and expansion into semi-arid and arid biomes. Despite moderate differences in diversification rates among ecological states, rate variation was better explained by unmeasured hidden states than by observed ecological states, suggesting that our broad ecological categorization alone does not explain diversification dynamics within this radiation. Size varies with ecological state, while tail length shows no detectable ecological association and remains phylogenetically conserved. These patterns indicate that environmental change and biome transformation were associated with ecological opportunity, coinciding with diversification through repeated habitat transitions and morphological divergence, providing a macroevolutionary framework linking environmental change, ecological expansion, and trait evolution in a continental radiation.

evolutionary biology↗

Generalists link peaks in the shifting adaptive landscape of Australia's dragon lizards

The adaptive landscape is a flexible concept in biology which helps map entities onto an eco-evolutionary topography. A common practice is clustering species to identify adaptive peaks but the pathways that allow movement into new adaptive zones remain poorly understood. Here we integrate new sequence-capture (>5,000 nuclear markers) and multivariate morphological data to investigate the adaptive landscape of Amphibolurinae dragon lizards (Agamidae). Our well-supported, time-calibrated phylogeny includes over 360 specimens from 176 species, including iconic taxa such as the frilled-neck lizard, thorny devil, and bearded dragon. We show that arrival in Australia was followed by rapid expansion of morphological diversity facilitated by generalist habitat use. Ancestral dragons were likely arboreal, but species with broad niche breadths and intermediate morphologies provided pathways to subsequent specialization. These findings reveal an evolutionary pathway for adaptive diversification in a major continental radiation.

evolutionary biology↗