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Characterization, phylogeny, alternative splicing and expression of Sox30 gene

机译:Sox30基因的表征,系统发育,可变剪接和表达

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Members of the Sox gene family isolated from both vertebrates and invertebrates have been proved to participate in a wide variety of developmental processes, including sex determination and differentiation. Among these members, Sox30 had been considered to exist only in mammals since its discovery, and its exact function remains unclear. Sox30 cDNA was cloned from the Nile tilapia by RT-PCR and RACE. Screening of available genome and EST databases and phylogenetic analysis showed that Sox30 also exists in non-mammalian vertebrates and invertebrates, which was further supported by synteny analyses. Tissue expression in human, mouse and tilapia suggested that Sox30 was probably a gonad-specific gene, which was also supported by the fact that Sox30 EST sequences were obtained from gonads of the animal species. In addition, four alternatively spliced isoforms were isolated from tilapia gonad. Their temporal and spatial expression patterns during normal and sex reversed gonadal development were investigated by RT-PCR and in situ hybridization. Our data suggest that expressions of Sox30 isoforms are related to stage and phenotypic-sex, observed in the germ cells of male gonad and in somatic cells of the female gonad. Sox30 is not a gene only existed in mammals, but exists widely throughout the animal kingdom as supported by our bioinformatic, phylogenetic and syntenic analyses. It is very likely that Sox30 is expressed exclusively in gonads. Expression analyses revealed that Sox30 may be involved in female and male gonadal development at different stages by alternative splicing.
机译:从脊椎动物和无脊椎动物中分离出来的Sox基因家族的成员已被证明参与了广泛的发育过程,包括性别确定和分化。在这些成员中,自发现以来,Sox30被认为仅存在于哺乳动物中,其确切功能尚不清楚。通过RT-PCR和RACE从尼罗罗非鱼中克隆了Sox30 cDNA。对可用基因组和EST数据库的筛选以及系统发育分析表明,Sox30也存在于非哺乳动物的脊椎动物和无脊椎动物中,这由同义分析进一步支持。在人,小鼠和罗非鱼中的组织表达表明,Sox30可能是性腺特异性基因,这一事实也得到了支持,Sox30 EST序列是从动物物种的性腺中获得的。另外,从罗非鱼的性腺中分离出四个剪接的同工型。通过RT-PCR和原位杂交研究其在正常和性别逆转性腺发育过程中的时空表达模式。我们的数据表明,在雄性腺的生殖细胞和雌性腺的体细胞中观察到,Sox30亚型的表达与阶段和表型性有关。 Sox30不仅是一个存在于哺乳动物中的基因,而且在我们的生物信息学,系统发育和同位分析的支持下,它在整个动物界也广泛存在。 Sox30很可能仅以性腺表达。表达分析表明,Sox30可能通过替代剪接在不同阶段参与雌性和雄性性腺发育。

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