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Souto, J.

Publications and source records attributed to Souto, J..

2 recordsLinked to original sources

Drivers of tandem repeats variation within and between stick insect genomes

Tandemly repeated sequences are noncoding, highly variable, yet integral components of eukaryotic genomes. Empirical research has so far largely focused on a few well-characterized, functional tandem repeats (TRs) or documented the broad diversity and rapid evolution of these repeats without explicitly testing the forces driving their evolution. By characterizing TR abundance and TR sequence composition within and between chromosomes and species in the stick insect genus Timema, we uncover that TR loads are enriched in genomic regions of high recombination but tend to be reduced in species with higher effective population sizes. These results suggest that there is a mutational effect of recombination that generates increased TR loads and that the bulk of TRs experience weak selection, leading to their rapid turnover over short evolutionary timescales. Finally, comparisons of centromere and non-centromere TRs reveal that the rapid divergence of centromeres is best explained by the combination of the fast-evolving nature of TRs per se and centromere-specific evolutionary forces. Overall, this study provides the first in-depth investigation of genome-wide TR evolution, while integrating the effects of recombination, genetic drift, and centromeric position along the genome.

evolutionary biology↗

Genome admixture among four hare species in Iberia: focus on the broom hare (Lepus castroviejoi)

Pleistocene climatic fluctuations have often driven range shifts and hybridization among related species, leaving present-day genomic footprints. In the Iberian Peninsula, Lepus timidus, after its post-deglaciation retreat, has left extensive mitochondrial DNA traces in three other hare species, but the genomic correlates and underlying biogeographic scenarios are still incompletely understood. This study focuses on Lepus castroviejoi, endemic to the Cantabrian region, using its non-Iberian sister species, L. corsicanus, for comparison. By analyzing coalescent patterns from 10 genomes, we estimate that these species remained isolated since their divergence, around 50,000 years ago, consistent with their current allopatry. Further analyses with 25 additional genomes indicate that small fractions of the L. castroviejoi genome originate from L. granatensis, L. timidus, and L. europaeus (0.72%, 0.08%, and 0.04%, respectively). Introgression dating based on tract lengths suggests L. granatensis was already admixed with L. timidus when it hybridized with L. castroviejoi, which could explain the granatensis-timidus ancestry tract junctions detected in L. castroviejoi. Genomic segments with such junctions contain genes enriched for cell signaling and olfactory receptor activity, possibly facilitating genetic exchange. This research demonstrates how genomic ancestry inferences can reveal complex multiway admixture histories and illuminate past biogeographic events.

evolutionary biology↗