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首页> 外文期刊>Development Genes and Evolution >The comparative study of five sex-determining proteins across insects unveils high rates of evolution at basal components of the sex determination cascade
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The comparative study of five sex-determining proteins across insects unveils high rates of evolution at basal components of the sex determination cascade

机译:对昆虫中五种性别决定蛋白的比较研究揭示了性别决定级联基本成分的高进化速率

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摘要

In insects, the sex determination cascade is composed of genes that interact with each other in a strict hierarchical manner, constituting a coadapted gene complex built in reverse order from bottom to top. Accordingly, ancient elements at the bottom are expected to remain conserved ensuring the correct functionality of the cascade. In the present work, we have studied the levels of variation displayed by five key components of the sex determination cascade across 59 insect species, including Sex-lethal, transformer, transformer-2, fruitless, doublesex, and sister-of-Sex-lethal (a paralog of Sxl encompassing sex-independent functions). Surprisingly, our results reveal that basal components of the cascade (doublesex, fruitless) seem to evolve more rapidly than previously suspected. Indeed, in the case of Drosophila, these proteins evolve more rapidly than the master regulator Sex-lethal. These results agree with the notion suggesting that genes involved in early aspects of development will be more constrained due to the large deleterious pleiotropic effects of mutations, resulting in increased levels of purifying selection at top positions of the cascade. The analyses of the selective episodes involved in the recruitment of Sxl into sex-determining functions further support this idea, suggesting the presence of bursts of adaptive selection in the common ancestor of drosophilids, followed by the onset of purifying selection preserving the master regulatory role of this protein on top of the Drosophila sex determination cascade. Altogether, these results underscore the importance of the position of sex determining genes in the cascade, constituting a major constraint shaping the molecular evolution of the insect sex determination pathway.
机译:在昆虫中,性别决定级联由严格按照层次结构相互作用的基因组成,构成了从下到上以相反顺序构建的共适应基因复合体。因此,预计底部的古代元素将保留下来,以确保级联的正确功能。在目前的工作中,我们研究了跨59种昆虫的性别决定级联的五个关键组件所显示的变异水平,这些昆虫包括致命性,变形金刚,变形金刚2,无果,双性和姊妹性致命(Sxl的旁系同源物,包括与性别无关的功能)。令人惊讶的是,我们的结果表明,级联的基础组成部分(双性恋,无果)似乎比以前怀疑的发展得更快。的确,就果蝇而言,这些蛋白质的进化要比主要调控因子“性致死”更快。这些结果与以下观点相吻合:由于突变具有巨大的有害多效性效应,因此涉及发育早期方面的基因将受到更大的限制,从而导致级联反应顶部位置的纯化选择水平提高。对Sxl募集到性别决定功能中涉及的选择性发作的分析进一步支持了这一想法,表明果蝇亲缘共同祖先中出现了一系列的自适应选择,随后开始进行纯化选择,从而保留了Sxl的主要调控作用。这种蛋白质位于果蝇性别决定的级联之上。总而言之,这些结果强调了性别决定基因在级联中的位置的重要性,构成了决定昆虫性别决定途径的分子进化的主要制约因素。

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