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Cellular mechanisms of sex determination in the red-eared slider turtle Trachemys scripta

机译:红耳滑龟性别决定的细胞机制

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摘要

In all vertebrates sex determination is the step at which development of a testis or ovary is initiated in the bipotential gonad. Although Mus musculus and the red-eared slider turtle, Trachemys scripta, use different mechanisms to initiate organogenesis of the testis (the Y-linked gene, Sry, in the mouse vs. the incubation temperature of the egg in the turtle), the structure of the adult testis is strikingly similar. We have identified several cellular mechanisms involved in testis organogenesis in mouse. Here we investigated whether these cellular mechanisms are conserved in T. scripta downstream of the temperature-dependent switch. Cell tracing experiments indicated that the coelomic epithelium in T. scripta contributes precursors for Sertoli cells and interstitial cells as in mouse. However, we detect no male-specific mesonephric cell migration, a process required for the de novo testis cord-forming process in mouse. In contrast to mouse gonads, where no cord structure is discernible until after the divergence of testis development, we find that primitive sex cords continuous with the coelomic epithelium exist in all T. scripta gonads from the earliest bipotential stages examined. We conclude that typical testis architecture results from the maintenance and elaboration of primitive sex cords in T. scripta rather than the assembly of de novo structures as in mouse.
机译:在所有脊椎动物中,性别确定是在双能性腺中启动睾丸或卵巢发育的步骤。尽管小家鼠和红耳滑龟龟Trachemys scripta使用不同的机制来启动睾丸的器官发生(小鼠中的Y连锁基因Sry与龟中卵的温育温度),结构成人睾丸的惊人相似。我们已经确定了小鼠睾丸器官发生中涉及的几种细胞机制。在这里,我们研究了这些细胞机制是否在温度依赖性开关下游的T. scripta中保守。细胞追踪实验表明,T。scripta中的腔上皮像小鼠一样是支持细胞和间质细胞的前体。但是,我们没有检测到雄性特异性中肾细胞迁移,这是小鼠从头睾丸线形成过程所必需的过程。与老鼠的性腺相反,在睾丸发育不同之前,无法辨认任何脐带结构,我们发现,从最早的双电位阶段开始,所有的T. scripta性腺都存在与腔上皮连续的原始性索。我们得出的结论是,典型的睾丸结构是由T.scripta中原始性帘线的维护和精加工产生的,而不是由小鼠的从头结构组装而成。

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