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Viruel, J.

Publications and source records attributed to Viruel, J..

2 recordsLinked to original sources

Taxon-specific or universal? Using target capture to study the evolutionary history of a rapid radiation

Target capture has emerged as an important tool for phylogenetics and population genetics in non-model taxa. Whereas developing taxon-specific capture probes requires sustained efforts, available universal kits may have a lower power to reconstruct relationships at shallow phylogenetic scales and within rapidly radiating clades. We present here a newly-developed target capture set for Bromeliaceae, a large and ecologically-diverse plant family with highly variable diversification rates. The set targets 1,776 coding regions, including genes putatively involved in key innovations, with the aim to empower testing of a wide range of evolutionary hypotheses. We compare the relative power of this taxon-specific set, Bromeliad1776, to the universal Angiosperms353 kit. The taxon-specific set results in higher enrichment success across the entire family, however, the overall performance of both kits to reconstruct phylogenetic trees is relatively comparable, highlighting the vast potential of universal kits for resolving evolutionary relationships. For more detailed phylogenetic or population genetic analyses, e.g. the exploration of gene tree concordance, nucleotide diversity or population structure, the taxon-specific capture set presents clear benefits. We discuss the potential lessons that this comparative study provides for future phylogenetic and population genetic investigations, in particular for the study of evolutionary radiations.

evolutionary biology↗

Molecular approaches reveal speciation between red and blue flowered plants in the Mediterranean Lysimachia arvensis and Lysimachia monelli (Primulaceae)

Flower colour constitutes a pivotal evolutionary force in speciation. The Mediterranean Lysimachia arvensis and L. monelli are morphologically variable species having both blue or red flowered plants. Previous studies suggested that L. arvensis plants differing in colour are diverging lineages, but this variation has not been considered in a phylogenetic context. We reconstruct the phylogenetic signal and the ancestral states of flower colour of Mediterranean Lysimachia species by using nuclear (ITS) and three plastid markers. Blue and red specimens are nested in two independent clades in the ITS tree, thus supporting that L. arvensis and L. monelli are polyphyletic, whereas low phylogenetic resolution was found in plastid markers. Blue-flowered L. arvensis is reconstructed sister to L. talaverae in a monophyletic clade sister to the remaining Lysimachia. Red-flowered L. arvensis is reconstructed sister to red-flowered L. monelli in a monophyletic clade sister to blue-flowered L. monelli and L. foemina. Our results suggest that colour lineages in L. arvensis and L. monelli constitute different species, but flower colour did not promote the separation of these lineages. We propose a new name for blue-flowered L. arvensis (L. loeflingii) and a new combination for red-flowered L. monelli (L. collina).

molecular biology↗