首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Genetic network underlying temperature-dependent sex determination is endogenously regulated by temperature in isolated cultured Trachemys scripta gonads.
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Genetic network underlying temperature-dependent sex determination is endogenously regulated by temperature in isolated cultured Trachemys scripta gonads.

机译:温度依赖性性别测定的遗传网络是通过孤立培养的曲囊Scripta Gonads的温度内源性调节。

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摘要

In reptiles with temperature-dependent sex determination, gonadogenesis is initially directed by the incubation temperature of the egg during the middle third of embryonic development. The mechanism by which temperature is transduced into a sex-determining molecular signal remains a mystery, and here we examine the molecular network underlying sex determination in gonads in vitro. We use a whole organ culture system to show that expression of putative members of the sex-determining network (Dmrt1, Sox9, Mis, and FoxL2) are regulated by temperature endogenously within cells in the bipotential gonad and do not require other embryonic tissues to be expressed in a normal pattern in the red-eared slider turtle, Trachemys scripta. Furthermore, following a change in temperature, these factors exhibit temperature-responsive expression patterns that last for the duration of gonadogenesis. Finally, mosaic misexpression of a fusion Sox9 construct demonstrates the ability to functionally manipulate the gonad at the molecular level.
机译:在具有温度依赖性的性别测定的爬行动物中,Gonadocenesis最初被胚胎发育中期蛋的孵育温度引导。将温度转导入性别测定分子信号的机制仍然是一种谜,我们在体外检查水道中的性别测定的分子网络。我们使用整个器官培养系统表明,性测定网络(DMRT1,SOX9,MIS和FOXL2)的推定成员的表达受到混合性腺细胞内的温度内源性的温度,不需要其他胚胎组织以正常模式表达红耳滑块龟,Trachemys Scripta。此外,在温度的变化之后,这些因素表现出持续持续的腺体发生持续时间的温度响应表达模式。最后,融合SOX9构建体的马赛克misexpression证明了在分子水平下功能操纵Gonad的能力。

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