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Dimorphic Expression of Various Transcription Factor and Steroidogenic Enzyme Genes during Gonadal Ontogeny in the Air-Breathing Catfish Clarias gariepinus

机译:呼吸Cat鱼的性腺发育过程中各种转录因子和类固醇酶基因的双态表达

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摘要

In the present study the expression of 13 genes known to be involved in sex differentiation and steroidogenesis in catfish was analyzed during gonadal ontogeny by quantitative real-time RT-PCR. Dmrt1 and sox9a showed exclusive expression in male gonads while ovarian aromatase (cyp19a1) and foxl2 were abundant in differentiating female gonads. Most of the genes related to steroidogenesis were expressed only after gonadal differentiation. However, genes coding for 3β-hydroxysteroid dehydrogenase (3β-hsd), 17α-hydroxylase/C17–20 lyase type 1 (cyp17) and steroidogenic acute regulatory protein (star) were barely detectable during gonadal differentiation. Ovarian aromatase, cyp19a1, which is responsible for estradiol-17β biosynthesis in females, was expressed very early in the undifferentiated gonads of catfish, around 30–40 days post hatch (dph). The steroidogenic enzyme, 11β-hydroxylase (cyp11b1) required for the production of 11-ketotestosterone (11-KT) was expressed only after differentiation of testis. These results suggest that estradiol-17β has a critical role in ovarian differentiation, while the role of 11-KT in testicular differentiation is doubtful. In conclusion, dimorphic expression of dmrt1 and sox9a in gonads during early development is required for testicular differentiation, and sex-specific expression of cyp19a1 and foxl2 in females plays a critical role in ovarian development. Our study reveals that the critical period of gonadal differentiation in catfish starts around 30–40 dph when sex-specific genes showed differential expression.
机译:在本研究中,通过定量实时RT-PCR分析了在性腺发育过程中cat鱼的性别分化和类固醇生成中涉及的13个基因的表达。 Dmrt1和sox9a在雄性腺中表现出排他性表达,而卵巢芳香化酶(cyp19a1)和foxl2在分化雌性腺中丰富。与类固醇生成有关的大多数基因仅在性腺分化后表达。但是,在性腺分化过程中几乎检测不到编码3β-羟类固醇脱氢酶(3β-hsd),17α-羟化酶/ C17-20裂合酶1型(cyp17)和类固醇生成的急性调节蛋白(星形)的基因。卵巢中的芳香化酶cyp19a1负责雌性雌二醇17β的生物合成,在孵化后30至40天左右(dph)的很早就在未分化的of鱼性腺中表达。仅在睾丸分化后才表达产生11-酮睾酮(11-KT)所需的类固醇生成酶11β-羟化酶(cyp11b1)。这些结果表明,雌二醇-17β在卵巢分化中起关键作用,而11-KT在睾丸分化中的作用令人怀疑。总之,睾丸分化需要早期发育期间性腺中dmrt1和sox9a的双态表达,而女性中cyp19a1和foxl2的性别特异性表达在卵巢发育中起关键作用。我们的研究表明,当性别特异性基因显示差异表达时,cat鱼性腺分化的关键时期始于30–40 dph左右。

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