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首页> 外文期刊>eLife journal >Cis-regulatory evolution integrated the Bric-à-brac transcription factors into a novel fruit fly gene regulatory network
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Cis-regulatory evolution integrated the Bric-à-brac transcription factors into a novel fruit fly gene regulatory network

机译:顺式调控进化将Bric-à-brac转录因子整合到一个新的果蝇基因调控网络中

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Gene expression evolution through gene regulatory network (GRN) changes has gained appreciation as a driver of morphological evolution. However, understanding how GRNs evolve is hampered by finding relevant cis -regulatory element (CRE) mutations, and interpreting the protein-DNA interactions they alter. We investigated evolutionary changes in the duplicated Bric-à-brac (Bab) transcription factors and a key Bab target gene in a GRN underlying the novel dimorphic pigmentation of D. melanogaster and its relatives. It has remained uncertain how Bab was integrated within the pigmentation GRN. Here, we show that the ancestral transcription factor activity of Bab gained a role in sculpting sex-specific pigmentation through the evolution of binding sites in a CRE of the pigment-promoting yellow gene. This work demonstrates how a new trait can evolve by incorporating existing transcription factors into a GRN through CRE evolution, an evolutionary path likely to predominate newly evolved functions of transcription factors.
机译:通过基因调控网络(GRN)的变化进行的基因表达进化已成为形态进化的驱动力。然而,通过发现相关的顺式调控元件(CRE)突变,并解释它们改变的蛋白质-DNA相互作用,阻碍了对GRNs进化的理解。我们调查了重复的Bric-à-brac(Bab)转录因子和GRN中黑腹果蝇D. melanogaster及其亲属的新型双态色素沉着的关键Bab靶基因的进化变化。尚不确定如何将Bab整合到色素沉着GRN中。在这里,我们显示Bab的祖传转录因子活性通过促进色素的黄色基因在CRE中的结合位点的进化在雕刻性别特异性色素中获得了作用。这项工作展示了如何通过CRE进化将现有的转录因子整合到GRN中,从而进化出新的性状。

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