Repetitive DNAs and chromosome evolution in Megaleporinus obtusidens and M. reinhardti (Characiformes: Anostomidae)

The high dynamism of repetitive DNAs is a major driver of chromosome evolution. In particular, the accumulation of repetitive DNA sequences has been reported as part of the differentiation of sex-specific chromosomes. In turn, the fish species of the genus Megaleporinus are a monophyletic clade in w...

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Veröffentlicht in:Genetica 2024-06, Vol.152 (2-3), p.63-70
Hauptverfasser: Dulz, Thais Aparecida, Azambuja, Matheus, Lorscheider, Carla Andrea, Noleto, Rafael Bueno, Moreira-Filho, Orlando, Nogaroto, Viviane, Nascimento, Viviane Demetrio, Diniz, Débora, de Mello Affonso, Paulo Roberto Antunes, Vicari, Marcelo Ricardo
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Sprache:eng
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Zusammenfassung:The high dynamism of repetitive DNAs is a major driver of chromosome evolution. In particular, the accumulation of repetitive DNA sequences has been reported as part of the differentiation of sex-specific chromosomes. In turn, the fish species of the genus Megaleporinus are a monophyletic clade in which the presence of differentiated ZZ/ZW sex chromosomes represents a synapomorphic condition, thus serving as a suitable model to evaluate the dynamic evolution of repetitive DNA classes. Therefore, transposable elements (TEs) and in tandem repeats were isolated and located on chromosomes of Megaleporinus obtusidens and M. reinhardti to infer their role in chromosome differentiation with emphasis on sex chromosome systems. Despite the conserved karyotype features of both species, the location of repetitive sequences - Rex 1 , Rex 3 , (TTAGGG) n , (GATA) n , (GA)n, (CA) n , and (A) n - varied both intra and interspecifically, being mainly accumulated in Z and W chromosomes. The physical mapping of repetitive sequences confirmed the remarkable dynamics of repetitive DNA classes on sex chromosomes that might have promoted chromosome diversification and reproductive isolation in Megaleporinus species.
ISSN:0016-6707
1573-6857
1573-6857
DOI:10.1007/s10709-024-00206-3