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首页> 外文期刊>BMC Genomics >Sex chromosome and sex locus characterization in goldfish, Carassius auratus (Linnaeus, 1758)
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Sex chromosome and sex locus characterization in goldfish, Carassius auratus (Linnaeus, 1758)

机译:金鱼,Carassius auratus(Linnaeus,1758)的性染色体和性轨迹表征

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Goldfish is an important model for various areas of research, including neural development and behavior and a species of significant importance in aquaculture, especially as an ornamental species. It has a male heterogametic (XX/XY) sex determination system that relies on both genetic and environmental factors, with high temperatures being able to produce female-to-male sex reversal. Little, however, is currently known on the molecular basis of genetic sex determination in this important cyprinid model. Here we used sequencing approaches to better characterize sex determination and sex-chromosomes in an experimental strain of goldfish. Our results confirmed that sex determination in goldfish is a mix of environmental and genetic factors and that its sex determination system is male heterogametic (XX/XY). Using reduced representation (RAD-seq) and whole genome (pool-seq) approaches, we characterized sex-linked polymorphisms and developed male specific genetic markers. These male specific markers were used to distinguish sex-reversed XX neomales from XY males and to demonstrate that XX female-to-male sex reversal could even occur at a relatively low rearing temperature (18?°C), for which sex reversal has been previously shown to be close to zero. We also characterized a relatively large non-recombining region (~?11.7?Mb) on goldfish linkage group 22 (LG22) that contained a high-density of male-biased genetic polymorphisms. This large LG22 region harbors 373 genes, including a single candidate as a potential master sex gene, i.e., the anti-Mullerian hormone gene (amh). However, no sex-linked polymorphisms were detected in the coding DNA sequence of the goldfish amh gene. These results show that our goldfish strain has a relatively large sex locus on LG22, which is likely the Y chromosome of this experimental population. The presence of a few XX males even at low temperature also suggests that other environmental factors in addition to temperature could trigger female-to-male sex reversal. Finally, we also developed sex-linked genetic markers, which will be important tools for future research on sex determination in our experimental goldfish population. However, additional work would be needed to explore whether this sex locus is conserved in other populations of goldfish.
机译:金鱼是各种研究领域的重要模型,包括神经发展和行为以及水产养殖中的重要意义,特别是作为观赏物种。它具有依赖于遗传和环境因素的男性异常(XX / XY)性别测定系统,高温能够产生女性对男性的性逆转。然而,几乎没有关于该重要脱钙模型的遗传性别测定的分子基础。在这里,我们使用测序方法以更好地表征在金鱼的实验菌株中的性别测定和性染色体。我们的结果证实,金鱼中的性别测定是环境和遗传因素的混合,其性别测定系统是男性杂种(XX / XY)。使用降低的表示(RAD-SEQ)和全基因组(池-SEQ)方法,我们表征了性关联的多态性和发育了男性特异性遗传标记。这些男性特异性标记用于区分XY雄性的性逆转的XX新马术,并证明XX女性对男性性逆转甚至可能发生在相对较低的饲养温度(18°C)处,其性逆转以前显示接近零。我们还表征了在金鱼连杆组22(LG22)上的相对大的非重组区域(〜α11.7μm),其含有高密度的雄性偏置遗传多态性。该大型LG22区域HARBORS 373基因,包括单个候选物作为潜在的母体性别基因,即抗Mullerian激素基因(AMH)。然而,在金鱼AMH基因的编码DNA序列中未检测到性联合多态性。这些结果表明,我们的金鱼菌株在LG22上具有相对较大的性别遗迹,这可能是这种实验群的Y染色体。即使在低温下,甚至在低温下也存在少数XX的男性也表明其他环境因素除了温度外,还可以触发女性对男性的性逆转。最后,我们还开发了性关联的遗传标记,这将是未来对我们实验性金鱼种群中性别测定研究的重要工具。但是,需要额外的工作来探索这种性遗址是否在金鱼的其他群体中保守。

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