Cioffi M B, Camacho J P M, Bertollo L A C
Departamento de Genética e Evolução, Universidade Federal de São Carlos, São Carlos, Brazil.
Cytogenet Genome Res. 2011;132(3):188-94. doi: 10.1159/000321571. Epub 2010 Oct 30.
The processes working on sex chromosome differentiation are still not completely understood. However, the accumulation of repetitive DNA sequences has been shown to be one of the first steps in the early stages of such differentiation. In addition, regions with suppressed or no recombination have a potential to accumulate these DNA sequences and, for this reason, the absence of recombination between the sex chromosomes favors, by itself, the accumulation of repetitive sequences on these chromosomes during evolution. The diversity of sex-determining mechanisms in fish, alongside with the absence of heteromorphic sex chromosomes in many species, makes this group a useful model to better understand evolutionary processes of sex chromosomes in vertebrates, considering that fish occupy the basal position in the phylogeny of this group. In this review we draw attention to a preferential accumulation and enrichment in repetitive DNAs in sex chromosomes of many neotropical fish species in comparison with autosomes. This phenomenon has been observed between both morphologically differentiated and nascent sex chromosome systems, which highlight the potential role of these sequences in the differentiation of fish sex chromosomes generating differences in morphology and size between them.
性染色体分化的相关过程仍未被完全理解。然而,重复DNA序列的积累已被证明是这种分化早期阶段的首要步骤之一。此外,重组受到抑制或不存在重组的区域有可能积累这些DNA序列,因此,性染色体之间缺乏重组本身就有利于这些染色体在进化过程中积累重复序列。鱼类性别决定机制的多样性,以及许多物种中不存在异形性染色体,使得这个群体成为一个有用的模型,有助于更好地理解脊椎动物性染色体的进化过程,因为鱼类在该类群的系统发育中处于基础地位。在这篇综述中,我们提请注意,与常染色体相比,许多新热带鱼类物种的性染色体中重复DNA存在优先积累和富集的现象。这种现象在形态学上已分化的性染色体系统和新生的性染色体系统中均有观察到,这突出了这些序列在鱼类性染色体分化中的潜在作用,导致它们在形态和大小上产生差异。