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Sex-Biased Expression of Sex-Differentiating Genes FOXL2 and FGF9 in American Alligators, Alligator mississippiensis

机译:性别差异基因FOXL2和FGF9在美国短吻鳄中的性别偏爱表达

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摘要

Across amniotes, sex-determining mechanisms exhibit great variation, yet the genes that govern sexual differentiation are largely conserved. Studies of evolution of sex-determining and sex-differentiating genes require an exhaustive characterization of functions of those genes such as FOXL2 and FGF9. FOXL2 is associated with ovarian development, and FGF9 is known to play a role in testicular organogenesis in mammals and other amniotes. As a step toward characterization of the evolutionary history of sexual development, we measured expression of FOXL2 and FGF9 across 3 developmental stages and 8 juvenile tissue types in male and female American alligators, Alligator mississippiensis. We report surprisingly high expression of FOXL2 before the stage of embryonic development when sex is determined in response to temperature, and sustained and variable expression of FGF9 in juvenile male, but not female tissue types. Novel characterization of gene expression in reptiles with temperature-dependent sex determination such as American alligators may inform the evolution of sex-determining and sex-differentiating gene networks, as they suggest alternative functions from which the genes may have been exapted. Future functional profiling of sex-differentiating genes should similarly follow other genes and other species to enable a broad comparison across sex-determining mechanisms.
机译:在各种羊膜上,决定性别的机制表现出很大的差异,但是控制性别分化的基因在很大程度上是保守的。性别决定和性别分化基因进化的研究需要详尽地表征那些基因(例如FOXL2和FGF9)的功能。 FOXL2与卵巢发育有关,已知FGF9在哺乳动物和其他羊膜动物的睾丸器官发生中起作用。作为表征性发育进化史的步骤,我们测量了美洲短吻鳄和密西西比短吻鳄的3个发育阶段和8种少年组织类型中FOXL2和FGF9的表达。我们报道令人惊讶的高表达FOXL2之前胚胎发育阶段时,性别是根据温度来确定的,而FGF9在少年男性而非女性组织类型中的持续和可变表达。具有温度依赖性性别决定因素(例如美国短吻鳄)的爬行动物中基因表达的新颖表征可能会促进性别决定和性别分化基因网络的进化,因为它们暗示了可能从中窃取了基因的替代功能。性别区分基因的未来功能分析应类似地遵循其他基因和其他物种,以实现跨性别决定机制的广泛比较。

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