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Rapid Diversification of FoxP2 in Teleosts through Gene Duplication in the Teleost-Specific Whole Genome Duplication Event

机译:通过硬骨鱼特异性全基因组复制事件中的基因复制使硬骨鱼中的FoxP2快速多样化。

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摘要

As one of the most conserved genes in vertebrates, FoxP2 is widely involved in a number of important physiological and developmental processes. We systematically studied the evolutionary history and functional adaptations of FoxP2 in teleosts. The duplicated FoxP2 genes (FoxP2a and FoxP2b), which were identified in teleosts using synteny and paralogon analysis on genome databases of eight organisms, were probably generated in the teleost-specific whole genome duplication event. A credible classification with FoxP2, FoxP2a and FoxP2b in phylogenetic reconstructions confirmed the teleost-specific FoxP2 duplication. The unavailability of FoxP2b in Danio rerio suggests that the gene was deleted through nonfunctionalization of the redundant copy after the Otocephala-Euteleostei split. Heterogeneity in evolutionary rates among clusters consisting of FoxP2 in Sarcopterygii (Cluster 1), FoxP2a in Teleostei (Cluster 2) and FoxP2b in Teleostei (Cluster 3), particularly between Clusters 2 and 3, reveals asymmetric functional divergence after the gene duplication. Hierarchical cluster analyses of hydrophobicity profiles demonstrated significant structural divergence among the three clusters with verification of subsequent stepwise discriminant analysis, in which FoxP2 of Leucoraja erinacea and Lepisosteus oculatus were classified into Cluster 1, whereas FoxP2b of Salmo salar was grouped into Cluster 2 rather than Cluster 3. The simulated thermodynamic stability variations of the forkhead box domain (monomer and homodimer) showed remarkable divergence in FoxP2, FoxP2a and FoxP2b clusters. Relaxed purifying selection and positive Darwinian selection probably were complementary driving forces for the accelerated evolution of FoxP2 in ray-finned fishes, especially for the adaptive evolution of FoxP2a and FoxP2b in teleosts subsequent to the teleost-specific gene duplication.
机译:作为脊椎动物中最保守的基因之一,FoxP2广泛参与许多重要的生理和发育过程。我们系统地研究了硬骨鱼中FoxP2的进化历史和功能适应性。使用硬骨鱼特异性全基因组复制事件产生了重复的FoxP2基因(FoxP2a和FoxP2b),这些基因在硬骨鱼中通过对8种生物的基因组数据库进行同义和旁系同源分析而鉴定。在系统发育重建中对FoxP2,FoxP2a和FoxP2b进行的可靠分类证实了硬骨鱼特异的FoxP2复制。不能在丹尼奥里狐中使用FoxP2b,这表明该基因是在耳脑-Euteleostei分裂后通过多余功能的非功能化而删除的。集群中由Sarcopterygii的FoxP2(集群1),Teleostei的FoxP2a(集群2)和Teleostei的FoxP2b(集群3)组成的集群之间的进化速率异质性,特别是在集群2和集群3之间,揭示了基因复制后的功能不对称。疏水性谱的层次聚类分析表明,这三个聚类之间存在显着的结构差异,并随后进行了逐步判别分析的验证,其中Leucoraja erinacea和Lepisosteus oculatus的FoxP2被分类为聚类1,而 Salmo salar 的FoxP2b被分类为聚类1。分组到群集2而不是群集3中。叉头盒域(单体和同型二聚体)的模拟热力学稳定性变化在FoxP2,FoxP2a和FoxP2b簇中显示出显着的差异。放松的净化选择和积极的达尔文选择可能是射线鱼中 FoxP2 加速进化的补充驱动力,尤其是 FoxP2a FoxP2b的适应性进化在硬骨鱼特异性基因复制后的硬骨鱼中。

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