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Lineage-specific transcription factors and the evolution of gene regulatory networks

机译:谱系特异性转录因子与基因调控网络的进化

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摘要

Nature is replete with examples of diverse cell types, tissues and body plans, forming very different creatures from genomes with similar gene complements. However, while the genes and the structures of proteins they encode can be highly conserved, the production of those proteins in specific cell types and at specific developmental time points might differ considerably between species. A full understanding of the factors that orchestrate gene expression will be essential to fully understand evolutionary variety. Transcription factor (TF) proteins, which form gene regulatory networks (GRNs) to act in cooperative or competitive partnerships to regulate gene expression, are key components of these unique regulatory programs. Although many TFs are conserved in structure and function, certain classes of TFs display extensive levels of species diversity. In this review, we highlight families of TFs that have expanded through gene duplication events to create species-unique repertoires in different evolutionary lineages. We discuss how the hierarchical structures of GRNs allow for flexible small to large-scale phenotypic changes. We survey evidence that explains how newly evolved TFs may be integrated into an existing GRN and how molecular changes in TFs might impact the GRNs. Finally, we review examples of traits that evolved due to lineage-specific TFs and species differences in GRNs.
机译:大自然充满了各种细胞类型,组织和身体计划的例子,与具有相似基因补体的基因组形成了截然不同的生物。但是,尽管它们编码的基因和蛋白质的结构可以高度保守,但是在特定的细胞类型和特定的发育时间点,这些蛋白质的生产在物种之间可能有很大差异。充分了解协调基因表达的因素对于全面了解进化多样性至关重要。转录因子(TF)蛋白形成基因调控网络(GRN),以合作或竞争性伙伴关系来调控基因表达,是这些独特调控程序的关键组成部分。尽管许多TF在结构和功能上都是保守的,但某些类别的TF显示出广泛的物种多样性。在这篇综述中,我们重点介绍了通过基因复制事件而扩展的TF家族,以在不同的进化谱系中创建物种独特的库。我们讨论了GRN的层次结构如何允许灵活的从小到大的表型变化。我们调查的证据解释了新进化的TF如何整合到现有GRN中,以及TF中的分子变化如何影响GRN。最后,我们回顾了由于特定于谱系的TF和GRN中物种差异而进化出的性状的例子。

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