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Turnover of Sex Chromosomes in Celebensis Group Medaka Fishes

机译:Celebensis组Medaka鱼类中性染色体的转换

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摘要

Sex chromosomes and the sex-determining (SD) gene are variable in vertebrates. In particular, medaka fishes in the genus Oryzias show an extremely large diversity in sex chromosomes and the SD gene, providing a good model to study the evolutionary process by which they turnover. Here, we investigated the sex determination system and sex chromosomes in six celebensis group species. Our sex-linkage analysis demonstrated that all species had an XX-XY sex determination system, and that the Oryzias marmoratus and O. profundicola sex chromosomes were homologous to O. latipes linkage group (LG) 10, while those of the other four species, O. celebensis, O. matanensis, O. wolasi, and O. woworae, were homologous to O. latipes LG 24. The phylogenetic relationship suggested a turnover of the sex chromosomes from O. latipes LG 24 to LG 10 within this group. Six sex-linkage maps showed that the former two and the latter four species shared a common SD locus, respectively, suggesting that the LG 24 acquired the SD function in a common ancestor of the celebensis group, and that the LG 10 SD function appeared in a common ancestor of O. marmoratus and O. profundicola after the divergence of O. matanensis. Additionally, fine mapping and association analysis in the former two species revealed that Sox3 on the Y chromosome is a prime candidate for the SD gene, and that the Y-specific 430-bp insertion might be involved in its SD function.
机译:性染色体和性别决定(SD)基因在脊椎动物中是可变的。特别是,Oryzias属的鱼在性染色体和SD基因上显示出极大的多样性,为研究其周转的进化过程提供了一个很好的模型。在这里,我们调查了六个celebensis组物种的性别决定系统和性别染色体。我们的性别联系分析表明,所有物种都具有XX-XY性别决定系统,并且Oryzias marmoratus和O.profundicola性染色体与O. latipes链接组(LG)10是同源的,而其他四个物种的O. celebensis,O。matanensis,O。wolasi和O. woworae与O. latipes LG 24同源。系统发生关系表明,该组中性染色体从O. latipes LG 24到LG 10发生转换。六张性别连锁图谱显示,前两个物种和后四个物种分别具有一个共同的SD基因座,这表明LG 24在celebensis组的共同祖先中获得了SD功能,而LG 10 SD功能在马塔山麻疯树(O. matanensis)发生分歧后,它是马角松鱼(O. marmoratus)和profundicola(O. profundicola)的共同祖先。此外,对前两个物种的精细作图和关联分析表明,Y染色体上的Sox3是SD基因的主要候选对象,并且Y特异性430 bp的插入可能与其SD功能有关。

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