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1.
Heredity (Edinb) ; 118(4): 366-373, 2017 04.
Artigo em Inglês | MEDLINE | ID: mdl-27804966

RESUMO

Chromosomal rearrangements have a relevant role in organismic evolution. However, little is known about the mechanisms that lead different phylogenetic clades to have different chromosomal rearrangement rates. Here, we investigate the causes behind the wide karyotypic diversity exhibited by mammals. In particular, we analyzed the role of metabolic, reproductive, biogeographic and genomic characteristics on the rates of macro- and microstructural karyotypic diversification (rKD) using comparative phylogenetic methods. We found evidence that reproductive characteristics such as larger litter size per year and longevity, by allowing a higher number of meioses in absolute time, favor a higher probability of chromosomal change. Furthermore, families with large geographic distributions but containing species with restricted geographic ranges showed a greater probability of fixation of macrostructural chromosomal changes in different geographic areas. Finally, rKD does not evolve by Brownian motion because the mutation rate depends on the concerted evolution of repetitive sequences. The decisive factors of rKD evolution will be natural selection, genetic drift and meiotic drive that will eventually allow or not the fixation of the rearrangements. Our results indicate that mammalian karyotypic diversity is influenced by historical and adaptive mechanisms where reproductive and genomic factors modulate the rate of chromosomal change.


Assuntos
Evolução Biológica , Rearranjo Gênico , Cariótipo , Mamíferos/genética , Animais , Metabolismo Basal , Tamanho Corporal , Deriva Genética , Longevidade , Meiose , Modelos Genéticos , Filogenia , Seleção Genética
2.
Mol Phylogenet Evol ; 93: 1-4, 2015 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-26192117

RESUMO

Tropical reef fishes show contrasting patterns of karyotypic diversity. Some families have a high chromosomal conservatism while others show wide variation in karyotypic macrostructure. However, the influence of life-history traits on karyotypic diversity is largely unknown. Using phylogenetic comparative methods, we assessed the effects of larval and adult species traits on chromosomal diversity rates of 280 reef species in 24 families. We employed a novel approach to account for trait variation within families as well as phylogenetic uncertainties. We found a strong negative relationship between karyotypic diversity rates and body size and depth range. These results suggest that lineages with higher dispersal potential and gene flow possess lower karyotypic diversity. Taken together, these results provide evidence that biological traits might modulate the rate of karyotypic diversity in tropical reef fishes.


Assuntos
Tamanho Corporal , Cromossomos/genética , Peixes/anatomia & histologia , Peixes/genética , Variação Genética , Animais , Cariótipo , Análise dos Mínimos Quadrados , Modelos Genéticos , Filogenia , Análise de Regressão
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