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Molecular Evolution of the Neural Crest Regulatory Network in Ray-Finned Fish

机译:鳍鱼神经the调控网络的分子进化

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摘要

Gene regulatory networks (GRN) are central to developmental processes. They are composed of transcription factors and signaling molecules orchestrating gene expression modules that tightly regulate the development of organisms. The neural crest (NC) is a multipotent cell population that is considered a key innovation of vertebrates. Its derivatives contribute to shaping the astounding morphological diversity of jaws, teeth, head skeleton, or pigmentation. Here, we study the molecular evolution of the NC GRN by analyzing patterns of molecular divergence for a total of 36 genes in 16 species of bony fishes. Analyses of nonsynonymous to synonymous substitution rate ratios (dN/dS) support patterns of variable selective pressures among genes deployed at different stages of NC development, consistent with the developmental hourglass model. Model-based clustering techniques of sequence features support the notion of extreme conservation of NC-genes across the entire network. Our data show that most genes are under strong purifying selection that is maintained throughout ray-finned fish evolution. Late NC development genes reveal a pattern of increased constraints in more recent lineages. Additionally, seven of the NC-genes showed signs of relaxation of purifying selection in the famously species-rich lineage of cichlid fishes. This suggests that NC genes might have played a role in the adaptive radiation of cichlids by granting flexibility in the development of NC-derived traits—suggesting an important role for NC network architecture during the diversification in vertebrates.
机译:基因调控网络(GRN)对发展过程至关重要。它们由转录因子和协调基因表达模块的信号分子组成,这些模块紧密调节生物的发育。神经c(NC)是一种多能细胞群,被认为是脊椎动物的一项重要创新。它的衍生物有助于塑造令人震惊的下巴,牙齿,头部骨骼或色素沉着的形态多样性。在这里,我们通过分析16种骨鱼中总共36个基因的分子差异模式来研究NC GRN的分子进化。非同义替代率(dN / dS)的非同义分析支持在NC发展的不同阶段部署的基因之间可变选择压力的模式,与发展沙漏模型一致。序列特征的基于模型的聚类技术支持整个网络中NC基因极度保守的概念。我们的数据表明,大多数基因处于强纯化选择之下,并在整个鱼鳍进化过程中得以维持。晚期NC发育基因揭示了近代谱系中约束增加的模式。此外,七种NC基因在著名的丽鱼科鱼类物种丰富的谱系中显示出纯化选择放松的迹象。这表明NC基因可能通过赋予NC衍生性状的发展灵活性而在丽鱼科鱼的适应性辐射中发挥了作用-这暗示了脊椎动物多样化过程中NC网络架构的重要作用。

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