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Molecular Mechanisms of Sex Determination in Reptiles

机译:爬行动物性别决定的分子机制

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摘要

Charles Darwin first provided a lucid explanation of how gender differences evolve nearly 140 years ago. Yet, a disconnect remains between his theory of sexual selection and the mechanisms that underlie the development of males and females. In particular, comparisons between representatives of different phyla (i.e., flies and mice) reveal distinct genetic mechanisms for sexual differentiation. Such differences are hard to comprehend unless we study organisms that bridge the phylogenetic gap. Analysis of variation within monophyletic groups (i.e., amniotes) is just as important if we hope to elucidate the evolution of mechanisms underlying sexual differentiation. Here we review the molecular, cellular, morphological, and physiological changes associated with sex determination in reptiles. Most research on the molecular biology of sex determination in reptiles describes expression patterns for orthologs of mammalian sex-determining genes. Many of these genes have evolutionarily conserved expression profiles (i.e., DMRT1 and SOX9 are expressed at a higher level in developing testes vs. developing ovaries in all species), which suggests functional conservation. However, expression profiling alone does not test gene function and will not identify novel sex-determining genes or gene interactions. For that reason, we provide a prospectus on various techniques that promise to reveal new sex-determining genes and regulatory interactions among these genes. We offer specific examples of novel candidate genes and a new signaling pathway in support of these techniques.
机译:查尔斯·达尔文(Charles Darwin)首先就近140年前的性别差异如何演变提供了清晰的解释。然而,他的性选择理论与促进男性和女性发展的机制之间仍然脱节。尤其是,不同门的代表(即蝇和小鼠)之间的比较揭示了不同的性别分化遗传机制。除非我们研究弥合系统发育差距的生物,否则很难理解这种差异。如果我们希望阐明潜在的性别分化机制的演变,则分析单系统群体(即羊膜动物)内的变异也同样重要。在这里,我们回顾了与爬行动物性别决定有关的分子,细胞,形态和生理变化。关于爬行动物性别决定的分子生物学的大多数研究都描述了哺乳动物性别决定基因直系同源基因的表达模式。这些基因中有许多具有进化保守的表达谱(即在所有物种中发育中的睾丸相对于发育中的卵巢以较高水平表达DMRT1和SOX9),这表明功能性保守。但是,仅表达谱分析不能测试基因功能,也不能鉴定新的性别决定基因或基因相互作用。因此,我们提供了各种技术的招股说明书,这些技术有望揭示新的性别决定基因以及这些基因之间的调控相互作用。我们提供了支持这些技术的新型候选基因和新信号通路的具体实例。

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