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Gonad differentiation in Zebrafish is regulated by the canonical Wnt signaling pathway

机译:斑马鱼的性腺分化受经典的Wnt信号通路调控

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摘要

Zebrafish males undergo a “juvenile ovary-to-testis” gonadal transformation process. Several genes, including nuclear receptor subfamily 5, group A (nr5a) and anti-Müllerian hormone (amh), and pathways such as Tp53-mediated germ-cell apoptosis have been implicated in zebrafish testis formation. However, our knowledge of the regulation of this complex process is incomplete, and much remains to be investigated about the molecular pathways and network of genes that control it. Using a microarray-based analysis of transforming zebrafish male gonads, we demonstrated that their transcriptomes undergo transition from an ovary-like pattern to an ovotestis to a testis-like profile. Microarray results also validated the previous histological and immunohistochemical observation that there is high variation in the duration and extent of commitment to the juvenile ovary phase among individuals. Interestingly, global gene expression profiling of diverging zebrafish juvenile ovaries and transforming ovotestes revealed that some members of the canonical Wnt/beta-catenin signaling pathway were differentially expressed between these two phases. To investigate whether Wnt/beta-catenin signaling plays a role in zebrafish gonad differentiation, we used the Tg (hsp70l:dkk1b-GFP)w32 line to inhibit Wnt/beta-catenin signaling during gonad differentiation. Activation of dkk1b-GFP expression by heat shock resulted in an increased proportion of males and corresponding decrease in gonadal aromatase gene (cyp19a1a) expression. The Wnt target gene, lymphocyte enhancer binding factor 1 (lef1), was also down-regulated in the process. Together, these results provide the first functional evidence that, similarly to mammals, Wnt/beta-catenin signaling is a “pro-female” pathway that regulates gonad differentiation in zebrafish.
机译:斑马鱼雄性经历“少年卵巢到睾丸”的性腺转化过程。斑马鱼睾丸的形成与包括核受体亚家族5,A组(nr5a)和抗苗勒激素(amh)在内的几种基因以及Tp53介导的生殖细胞凋亡等途径有关。但是,我们对这种复杂过程调控的知识尚不完善,关于控制它的基因的分子途径和网络的研究还有很多。使用基于微阵列分析的斑马鱼雄性腺转化,我们证明了它们的转录组经历了从卵巢样模式到卵睾丸到睾丸样轮廓的转变。基因芯片的结果也证实了先前的组织学和免疫组织化学观察结果,即个体对青少年卵巢期的持续时间和承诺程度存在很大差异。有趣的是,不同的斑马鱼幼体卵巢和转化的卵睾丸的全球基因表达谱揭示了经典的Wnt /β-catenin信号通路的某些成员在这两个阶段之间差异表达。为了研究Wnt /β-catenin信号在斑马鱼性腺分化中是否起作用,我们使用了Tg(hsp70l:dkk1b-GFP)w32细胞系来抑制性腺分化期间的Wnt /β-catenin信号传导。通过热激激活dkk1b-GFP表达,导致雄性比例增加,而性腺芳香酶基因(cyp19a1a)表达相应降低。 Wnt靶基因,淋巴细胞增强因子1(lef1),也被下调。总之,这些结果提供了第一个功能证据,即与哺乳动物类似,Wnt /β-catenin信号传导是调节斑马鱼性腺分化的“前女性”途径。

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