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首页> 外文期刊>BMC Evolutionary Biology >The evolutionary process of mammalian sex determination genes focusing on marsupial SRY s
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The evolutionary process of mammalian sex determination genes focusing on marsupial SRY s

机译:着眼于有袋类SRY的哺乳动物性别决定基因的进化过程

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Maleness in mammals is genetically determined by the Y chromosome. On the Y chromosome SRY is known as the mammalian male-determining gene. Both placental mammals (Eutheria) and marsupial mammals (Metatheria) have SRY genes. However, only eutherian SRY genes have been empirically examined by functional analyses, and the involvement of marsupial SRY in male gonad development remains speculative. In order to demonstrate that the marsupial SRY gene is similar to the eutherian SRY gene in function, we first examined the sequence differences between marsupial and eutherian SRY genes. Then, using a parsimony method, we identify 7 marsupial-specific ancestral substitutions, 13 eutherian-specific ancestral substitutions, and 4 substitutions that occurred at the stem lineage of therian SRY genes. A literature search and molecular dynamics computational simulations support that the lineage-specific ancestral substitutions might be involved with the functional differentiation between marsupial and eutherian SRY genes. To address the function of the marsupial SRY gene in male determination, we performed luciferase assays on the testis enhancer of Sox9 core (TESCO) using the marsupial SRY. The functional assay shows that marsupial SRY gene can weakly up-regulate the luciferase expression via TESCO. Despite the sequence differences between the marsupial and eutherian SRY genes, our functional assay indicates that the marsupial SRY gene regulates SOX9 as a transcription factor in a similar way to the eutherian SRY gene. Our results suggest that SRY genes obtained the function of male determination in the common ancestor of Theria (placental mammals and marsupials). This suggests that the marsupial SRY gene has a function in male determination, but additional experiments are needed to be conclusive.
机译:哺乳动物的雄性是由Y染色体遗传决定的。在Y染色体上,SRY被称为哺乳动物雄性决定基因。胎盘哺乳动物(Eutheria)和有袋哺乳动物(Metatheria)都具有SRY基因。然而,通过功能分析仅凭经验检查了欧亚大陆的SRY基因,有袋SRY在男性性腺发育中的参与仍是推测性的。为了证明有袋动物SRY基因在功能上与真人SRY基因相似,我们首先研究有袋人SRY基因和真人SRY基因之间的序列差异。然后,使用简约方法,我们确定7个有袋动物特有的祖先替代,13个欧亚特有的祖先替代和4个在Therian SRY基因的茎系发生的替代。文献搜索和分子动力学计算模拟支持有谱特定祖先替换可能与有袋和Surryus SRY基因之间的功能分化有关。为了解决有袋SRY基因在男性测定中的功能,我们使用有袋SRY对Sox9核心睾丸增强子(TESCO)进行了荧光素酶测定。功能测定表明,有袋SRY基因可以通过TESCO弱上调荧光素酶的表达。尽管有袋动物和真人的SRY基因之间存在序列差异,我们的功能分析表明,有袋动物的SRY基因以与真人的SRY基因相似的方式调节SOX9作为转录因子。我们的结果表明,SRY基因在Theria(胎盘哺乳动物和有袋动物)的共同祖先中获得了雄性决定的功能。这表明有袋SRY基因在雄性决定中具有功能,但是还需要进一步的实验才能得出结论。

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