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Velo-Anton, G.

Publications and source records attributed to Velo-Anton, G..

2 recordsLinked to original sources

Genomic, phenotypic and environmental correlates of speciation in the midwife toads (Alytes)

Speciation, i.e., the formation of new species, implies that diverging populations evolve genetic and phenotypic factors that promote reproductive isolation (RI), but the adaptive vs. neutral origin of these factors and their relative contributions across the speciation continuum remain elusive. Here we test which of genomic, bioacoustic, morphological and environmental differentiation best predicts RI across the midwife toads (genus Alytes), a diversification of Mediterranean amphibians. Hybrid zone analyses in the A. obstetricans complex support that without strong geographic barriers to dispersal, the extent of introgression (which should reflect the strength of RI) covaries with genomic divergence irrespective of other factors. Phenotypic divergence become important later along the continuum, namely between non-admixing species attributed to distinct subgenera. Our results suggest that by putatively causing intrinsic incompatibilities in hybrids, the genetic mutations accumulating randomly between allopatric populations act as the initial trigger of RI, while substantial ecological and behavioral differentiation is a long-term consequence of species divergence that ultimately promotes sympatry. Whereas speciation is usually claimed to be primarily adaptive, our study corroborates recent findings that new species may also be a neutral outcome of gradual phylogeographic divergence, which has practical implications for species delimitation.

evolutionary biology↗

Hidden in the sand: phylogenomics unravel an unexpected evolutionary history on the desert-adapted vipers of the genus Cerastes

The desert vipers of the genus Cerastes are a small clade of medically important venomous snakes within the family Viperidae. According to published morphological and molecular studies, the group is comprised by four species: two morphologically similar and phylogenetically sister taxa, the African horned viper (Cerastes cerastes) and the Arabian horned viper (Cerastes gasperettii); a more distantly related species, the Saharan sand viper (Cerastes vipera), and the enigmatic Bohmes sand viper (Cerastes boehmei), only known from a single specimen in captivity allegedly captured in Central Tunisia. In this study, we analyzed one mitochondrial marker (COI) as well as genome-wide data (ddRAD sequencing) from 28 and 41 samples, respectively, covering the entire distribution range of the genus to explore the population genomics, phylogenomic relationships and introgression patterns within the genus Cerastes. Additionally, and to provide insights into the mode of diversification of the group, we carried out niche overlap analyses considering climatic and habitat variables. Both nuclear phylogenomic reconstructions and population structure analyses have unveiled an unexpected evolutionary history for the genus Cerastes, which sharply contradicts the morphological similarities and previously published mitochondrial approaches. Cerastes cerastes and C. vipera are recovered as sister taxa whilst C. gasperettii is a sister taxon to the clade formed by these two species. We found a relatively high niche overlap (OI > 0.7) in both climatic and habitat variables between C. cerastes and C. vipera, contradicting a potential scenario of sympatric speciation. These results are in line with the introgression found between the northwestern African populations of C. cerastes and C. vipera. Finally, our genomic data confirms the existence of a lineage of C. cerastes in Arabia. All these results highlight the importance of genome-wide data over few genetic markers to study the evolutionary history of species.

genomics↗