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izvor podataka: crosbi

Mitochondrial introgression suggests extensive ancestral hybridization events among Saccharomyces species (CROSBI ID 235503)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Peris, David ; Arias, Armando ; Orlić, Sandi ; Belloch, Carmela ; Pérez- Través, Laura ; Querol, Amparo ; Barrio, Eladio Mitochondrial introgression suggests extensive ancestral hybridization events among Saccharomyces species // Molecular phylogenetics and evolution, 108 (2017), 49-60. doi: 10.1016/j.ympev.2017.02.008

Podaci o odgovornosti

Peris, David ; Arias, Armando ; Orlić, Sandi ; Belloch, Carmela ; Pérez- Través, Laura ; Querol, Amparo ; Barrio, Eladio

engleski

Mitochondrial introgression suggests extensive ancestral hybridization events among Saccharomyces species

Horizontal gene transfer (HGT) in eukaryotic plastids and mitochondrial genomes is common, and plays an important role in organism evolution. In yeasts, recent mitochondrial HGT has been suggested between S. cerevisiae and S. paradoxus. However, few strains have been explored given the lack of accurate mitochondrial genome annotations. Mitochondrial genome sequences are important to understand how frequent these introgressions occur, and their role in cytonuclear incompatibilities and fitness. Indeed, most of the Bateson-Dobzhansky-Muller genetic incompatibilities described in yeasts are driven by cytonuclear incompatibilities. We herein explored the mitochondrial inheritance of several worldwide distributed wild Saccharomyces species and their hybrids isolated from different sources and geographic origins. We demonstrated the existence of several recombination points in mitochondrial region COX2-ORF1, likely mediated by either the activity of the protein encoded by the ORF1 (F-SceIII) gene, a free-standing homing endonuclease, or mostly facilitated by A+T tandem repeats and regions of integration of GC clusters. These introgressions were shown to occur among strains of the same species and among strains of different species, which suggests a complex model of Saccharomyces evolution that involves several ancestral hybridization events in wild environments.

Saccharomyces, reticulate evolution, mitochondrial introgression, selfish elements, recombination, interspecies hybridization

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Podaci o izdanju

108

2017.

49-60

objavljeno

1055-7903

10.1016/j.ympev.2017.02.008

Povezanost rada

Biologija

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