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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Expression analysis of growth differentiation factor 9 (Gdf9/gdf9), anti-mullerian hormone (Amh/amh) and aromatase (Cyp19a1a/cyp19a1a) during gonadal differentiation of the zebrafish, Danio rerio
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Expression analysis of growth differentiation factor 9 (Gdf9/gdf9), anti-mullerian hormone (Amh/amh) and aromatase (Cyp19a1a/cyp19a1a) during gonadal differentiation of the zebrafish, Danio rerio

机译:生长分化因子9(GDF9 / GDF9)的表达分析,Zebrafish Gonadal分化期间抗Mullerian激素(AMH / AMH)和芳香酶(CYP19A1A / CYP19A1A),Danio Rerio

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摘要

In the zebrafish, no sex-determining gene has been identified, while some sex-related genes, such as cyp19a1a and amh, show sexually dimorphic expression. Interestingly, most of these genes are expressed in the somatic cells. With increasing evidence suggesting roles of germ cells in gonadal differentiation, there is an increasing interest in the factors released by the germ cells for the bidirectional communication between the two compartments. We have reported that Gdf9/gdf9 is an oocyte-specific factor in the zebrafish, similar to that of mammals. Whether and how Gdf9 is involved in gonadal differentiation is unknown. In this study, we compared the expression levels of gdf9, cyp19a1a, and amh among several other sex-related genes in the gonads before, during, and after sex differentiation. The expression of gdf9 started in the gonads before sex differentiation, and its level surged in the differentiated ovary. Its expression pattern was similar to that of cyp19a1a, but reciprocal to amh expression. Using recombinant zebrafish Gdf9 (rzfGdf9), we further showed that Gdf9 significantly suppressed the expression of amh while increased that of activin beta subunits (inhbaa and inhbb) in vitro. Although gdf9 and cyp19a1a showed co-expression during gonadal differentiation, we only observed a slight but not significant response of cyp19a1a to rzfGdf9. Knocking down the expression of gdf9 and cyp19a1a with vivo-morpholinos caused a male-skewed sex ratio. Our data suggested that Gdf9 is likely involved in promoting oocyte/ovary differentiation in the zebrafish and it may act by suppressing amh expression, at least partly, in the somatic cells.
机译:在斑马鱼中,没有发现性别测定基因,而一些性与CYP19A1A和AMH等性有关的基因,则表现出性二态表达。有趣的是,大多数这些基因在体细胞中表达。随着越来越多的证据表明种植体中的菌群中的毒细胞分化,胚芽细胞释放的因素越来越令两个隔间之间的双向通信的因素。我们报道,GDF9 / GDF9是斑马鱼中的卵母细胞特异性因素,类似于哺乳动物的特定因素。无论是如何以及GDF9如何参与Gonadal差异化都是未知的。在这项研究中,我们将GDF9,CYP19A1A和AMH的表达水平与性别分化之前,期间和之后的性别分化之前,期间和之后的几种其他性与之相关基因中的表达水平。 GDF9的表达在性别分化之前开始于GONAD,其水平在分化的卵巢中汹涌。其表达模式与CYP19A1A的表达模式类似,但对AMH表达的互核感。使用重组斑马鱼GDF9(RZFGDF9),我们进一步表明GDF9显着抑制了AMH的表达,同时在体外增加了激活蛋白β亚基(INHBAA和INHBB)的表达。虽然GDF9和CYP19A1A在促性腺分化期间表达了共表达,但我们只观察到CYP19A1A对RZFGDF9的轻微但不显着的反应。敲击GDF9和CYP19A1A的表达与体内变质醇导致雄性偏斜性比例。我们的数据表明,GDF9可能参与促进斑马鱼中的卵母/卵巢分化,并且它可以通过至少部分地在体细胞中抑制AMH表达来作用。

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