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首页> 外文期刊>Reproductive Biology and Endocrinology >Molecular cloning and expression analysis of dmrt1 and sox9 during gonad development and male reproductive cycle in the lambari fish, Astyanax altiparanae
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Molecular cloning and expression analysis of dmrt1 and sox9 during gonad development and male reproductive cycle in the lambari fish, Astyanax altiparanae

机译:豚鼠性腺发育中性腺发育和雄性生殖周期中dmrt1和sox9的分子克隆和表达分析

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Background The dmrt1 and sox9 genes have a well conserved function related to testis formation in vertebrates, and the group of fish presents a great diversity of species and reproductive mechanisms. The lambari fish (Astyanax altiparanae) is an important Neotropical species, where studies on molecular level of sex determination and gonad maturation are scarce. Methods Here, we employed molecular cloning techniques to analyze the cDNA sequences of the dmrt1 and sox9 genes, and describe the expression pattern of those genes during development and the male reproductive cycle by qRT-PCR, and related to histology of the gonad. Results Phylogenetic analyses of predicted amino acid sequences of dmrt1 and sox9 clustered A. altiparanae in the Ostariophysi group, which is consistent with the morphological phylogeny of this species. Studies of the gonad development revealed that ovary formation occurred at 58?days after hatching (dah), 2?weeks earlier than testis formation. Expression studies of sox9 and dmrt1 in different tissues of adult males and females and during development revealed specific expression in the testis, indicating that both genes also have a male-specific role in the adult. During the period of gonad sex differentiation, dmrt1 seems to have a more significant role than sox9. During the male reproductive cycle dmrt1 and sox9 are down-regulated after spermiation, indicating a role of these genes in spermatogenesis. Conclusions For the first time the dmrt1 and sox9 were cloned in a Characiformes species. We show that both genes have a conserved structure and expression, evidencing their role in sex determination, sex differentiation and the male reproductive cycle in A. altiparanae. These findings contribute to a better understanding of the molecular mechanisms of sex determination and differentiation in fish.
机译:背景dmrt1和sox9基因在脊椎动物中与睾丸的形成有关具有良好的保守功能,而这组鱼类则表现出很大的物种多样性和生殖机制。兰巴鱼(Astyanax altiparanae)是重要的新热带物种,缺乏关于性别确定和性腺成熟的分子水平的研究。方法在这里,我们采用分子克隆技术分析了dmrt1和sox9基因的cDNA序列,并通过qRT-PCR描述了这些基因在发育和雄性生殖周期中的表达模式,并与性腺的组织学有关。结果系统发育分析的dmrt1和sox9预测的氨基酸序列在Ostariophysi组中簇集了A. altiparanae,这与该物种的形态学系统一致。对性腺发育的研究表明,卵巢形成发生在孵化(dah)后58天,比睾丸形成早2周。 sox9和dmrt1在成年男性和女性的不同组织中以及发育过程中的表达研究表明,睾丸中有特定的表达,这表明这两个基因在成年男性中也都具有男性特异性的作用。在性腺性别分化期间,dmrt1似乎比sox9具有更重要的作用。在雄性生殖周期中,dmrt1和sox9在精子化后被下调,表明这些基因在精子发生中的作用。结论首次将dmrt1和sox9克隆到Characiformes物种中。我们显示这两个基因具有保守的结构和表达,证明它们在拟南芥中的性别决定,性别分化和雄性生殖周期中的作用。这些发现有助于更好地了解鱼类性别决定和分化的分子机制。

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