0000000000319872

AUTHOR

Stefano Berto

showing 2 related works from this author

Molecular and ecological signs of mitochondrial adaptation: consequences for introgression?

2013

The evolution of the mitochondrial genome and its potential adaptive impact still generates vital debates. Even if mitochondria have a crucial functional role, as they are the main cellular energy suppliers, mitochondrial DNA (mtDNA) introgression is common in nature, introducing variation in populations upon which selection may act. Here we evaluated whether the evolution of mtDNA in a rodent species affected by mtDNA introgression is explained by neutral expectations alone. Variation in one mitochondrial and six nuclear markers in Myodes glareolus voles was examined, including populations that show mtDNA introgression from its close relative, Myodes rutilus. In addition, we modelled prote…

MaleMitochondrial DNANuclear geneMolecular Sequence DataIntrogressionMitochondrionDNA MitochondrialEvolution MolecularGeneticsAnimalsSelection GeneticEcosystemPhylogenyGenetics (clinical)Local adaptationGeneticsNatural selectionbiologyArvicolinaeEcologyCytochrome bta1182Genetic VariationCytochromes bbiology.organism_classificationAdaptation PhysiologicalMitochondriata1181Original ArticleRutilusHeredity
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Introgression of mitochondrial DNA among Myodes voles: consequences for energetics?

2011

Abstract Background Introgression of mitochondrial DNA (mtDNA) is among the most frequently described cases of reticulate evolution. The tendency of mtDNA to cross interspecific barriers is somewhat counter-intuitive considering the key function of enzymes that it encodes in the oxidative-phosphorylation process, which could give rise to hybrid dysfunction. How mtDNA reticulation affects the evolution of metabolic functions is, however, uncertain. Here we investigated how morpho-physiological traits vary in natural populations of a common rodent (the bank vole, Myodes glareolus) and whether this variation could be associated with mtDNA introgression. First, we confirmed that M. glareolus ha…

0106 biological sciencesMaleMitochondrial DNANuclear geneEvolutionIntrogression010603 evolutionary biology01 natural sciencesDNA Mitochondrial03 medical and health sciencesQH359-425AnimalsEcology Evolution Behavior and Systematics030304 developmental biologyGeneticsCell Nucleus0303 health sciencesbiologyCytochrome bArctic RegionsArvicolinaebiology.organism_classificationReticulate evolutionNuclear DNABank volePhenotypeArvicolinaeFemaleBasal MetabolismResearch ArticleBMC evolutionary biology
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