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Transcriptional evolution underlying vertebrate sexual development

机译:脊椎动物性发育潜在的转录进化

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Explaining the diversity of vertebrate sex-determining mechanisms ranging from genotypic (GSD) to temperature-dependent (TSD) remains a developmental and evolutionary conundrum. Using a phylogenetic framework, we explore the transcriptional evolution during gonadogenesis of several genes involved in sexual development, combining novel data from Chrysemys picta turtles (TSD) and published data from other TSD and GSD vertebrates. Our novel C. picta dataset underscores Sf1 and Wt1 as potential activators of the thermosensitive period and uncovered the first evidence of Dax1 involvement in male development in a TSD vertebrate. Contrasting transcriptional profiles revealed male-biased Wt1 expression in fish while monomorphic expression is found in tetrapods but absent in turtles. Sf1 expression appears highly labile with transitions among testicular, ovarian, and non-sex-specific gonadal formation patterns among and within lineages. Dax1's dual role in ovarian and testicular formation is found in fish and mammals but is dosage-sensitive exclusively in eutherian mammals due to its X-linkage in this group. Contrastingly, Sox9 male-biased and Aromatase female-biased expression appear ancestral and virtually conserved throughout vertebrates despite significant heterochronic changes in expression as other elements likely replaced their function in early gonadogenesis. Finally, research avenues are highlighted to further study the evolution of the regulatory network of sexual development.
机译:解释从基因型(GSD)到温度依赖性(TSD)的脊椎动物性别决定机制的多样性仍然是一个发展和进化的难题。使用系统发育框架,我们结合了来自Chrysemys picta龟(TSD)的新数据和来自其他TSD和GSD脊椎动物的已发布数据,探索了涉及性发育的几个基因在生殖腺过程中的转录进化。我们新颖的C. picta数据集强调了Sf1和Wt1作为热敏期的潜在激活剂,并揭示了Dax1参与TSD脊椎动物雄性发育的第一个证据。相反的转录谱显示在鱼类中男性偏向Wt1表达,而在四足动物中发现单态表达,而在海龟中不存在。 Sf1表达似乎非常不稳定,在谱系之中和之内的睾丸,卵巢和非性别特异性性腺形成模式之间具有过渡。在鱼类和哺乳动物中发现了Dax1在卵巢和睾丸形成中的双重作用,但由于在该类动物中的X连锁作用,其在剂量的敏感性上仅在真人哺乳动物中敏感。相反,尽管在表达上存在显着的异时性变化,但在其他脊椎动物中,Sox9雄性偏爱和Aromatase雌性偏爱的表达似乎是祖先的,并且实际上是保守的,因为其他元素可能替代了它们在性腺发育早期的功能。最后,重点突出了研究途径,以进一步研究性发育调控网络的演变。

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