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Monotreme sex chromosomes--implications for the evolution of amniote sex chromosomes.

机译:Monotreme性染色体-对羊膜性染色体进化的启示。

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In vertebrates, a highly conserved pathway of genetic events controls male and female development, to the extent that many genes involved in human sex determination are also involved in fish sex determination. Surprisingly, the master switch to this pathway, which intuitively could be considered the most critical step, is inconsistent between vertebrate taxa. Interspersed in the vertebrate tree there are species that determine sex by environmental cues such as the temperature at which eggs are incubated, and then there are genetic sex-determination systems, with male heterogametic species (XY systems) and female heterogametic species (ZW systems), some of which have heteromorphic, and others homomorphic, sex chromosomes. This plasticity of sex-determining switches in vertebrates has made tracking the events of sex chromosome evolution in amniotes a daunting task, but comparative gene mapping is beginning to reveal some striking similarities across even distant taxa. In particular, the recent completion of the platypus genome sequence has completely changed our understanding of when the therian mammal X and Y chromosomes first arose (they are up to 150 million years younger than previously thought) and has also revealed the unexpected insight that sex determination of the amniote ancestor might have been controlled by a bird-like ZW system.
机译:在脊椎动物中,遗传事件的高度保守途径控制着雄性和雌性的发育,以至于许多与人类性别决定有关的基因也与鱼类性别决定有关。出乎意料的是,主脊椎动物切换到该途径(直觉上可以认为是最关键的步骤)在脊椎动物类群之间是不一致的。散布在脊椎动物树中的物种通过环境提示(例如卵的孵化温度)确定性别,然后存在遗传性别决定系统,其中雄性杂配物种(XY系统)和雌性杂配物种(ZW系统) ,其中一些具有异型,另一些具有同型性染色体。脊椎动物中决定性别的开关的可塑性使跟踪羊膜动物性染色体进化的事件变得艰巨,但是比较基因图谱开始揭示甚至在遥远的生物群上也有惊人的相似之处。尤其是鸭嘴兽基因组序列的最新完成,完全改变了我们对何时第一个哺乳动物X和Y染色体出现的认识(它们比以前想象的要年轻1.5亿年),并且还揭示了人们对性别确定的出乎意料的见解。羊膜祖先的一部分可能是由鸟状的ZW系统控制的。

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