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Independent Sex Chromosome Evolution in Lower Vertebrates: A Molecular Cytogenetic Overview in the Erythrinidae Fish Family

机译:下脊椎动物中的独立性染色体进化:红藻鱼科的分子细胞遗传学概述。

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摘要

The Erythrinidae fish family is an excellent model for analyzing the evolution of sex chromosomes. Different stages of sex chromosome differentiation from homomorphic to highly differentiated ones can be found among the species of this family. Here, whole chromosome painting, together with the cytogenetic mapping of repetitive DNAs, highlighted the evolutionary relationships of the sex chromosomes among different erythrinid species and genera. It was demonstrated that the sex chromosomes can follow distinct evolutionary pathways inside this family. Reciprocal hybridizations with whole sex chromosome probes revealed that different autosomal pairs have evolved as the sex pair, even among closely related species. In addition, distinct origins and different patterns of differentiation were found for the same type of sex chromosome system. These features expose the high plasticity of the sex chromosome evolution in lower vertebrates, in contrast to that occurring in higher ones. A possible role of thissex chromosome turnover in the speciation processes is also discussed.
机译:Erythrinidae鱼科是分析性染色体进化的绝佳模型。在这个家族的物种中,可以发现从同态到高度分化的性染色体分化的不同阶段。在这里,整个染色体的绘画,以及重复性DNA的细胞遗传学定位,突出了不同红藻种和属之间性染色体的进化关系。结果表明,性染色体可以在该家族内部遵循不同的进化途径。与整个性染色体探针的相互杂交显示,即使在密切相关的物种中,不同的常染色体对也已作为性对进化。此外,对于相同类型的性染色体系统,发现了不同的起源和不同的分化模式。与高等脊椎动物相比,这些特征揭示了低等脊椎动物性染色体进化的高度可塑性。还讨论了这种性别染色体更新在物种形成过程中的可能作用。

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