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New perspectives on pharyngeal dorsoventral patterning in development and evolution of the vertebrate jaw

机译:咽颌面模式在脊椎动物颌骨发育和进化中的新观点

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Patterning of the vertebrate facial skeleton involves the progressive partitioning of neural-crest-derived skeletal precursors into distinct subpopulations along the anteroposterior (AP) and dorsoventral (DV) axes. Recent evidence suggests that complex interactions between multiple signaling pathways, in particular Endothelin-1 (Edn1), Bone Morphogenetic Protein (BMP), and Jagged-Notch, are needed to pattern skeletal precursors along the DV axis. Rather than directly determining the morphology of individual skeletal elements, these signals appear to act through several families of transcription factors, including Dlx, Msx, and Hand, to establish dynamic zones of skeletal differentiation. Provocatively, this patterning mechanism is largely conserved from mouse and zebrafish to the jawless vertebrate, lamprey. This implies that the diversification of the vertebrate facial skeleton, including the evolution of the jaw, was driven largely by modifications downstream of a conversed pharyngeal DV patterning program.
机译:脊椎动物面部骨骼的图案包括沿前后(AP)和背腹(DV)轴将神经-来源的骨骼前体逐渐划分为不同的亚群。最近的证据表明,需要多个信号通路之间的复杂相互作用,尤其是内皮素-1(Edn1),骨形态发生蛋白(BMP)和锯齿状缺口,才能沿着DV轴构图骨骼前体。这些信号似乎不是直接确定单个骨骼元素的形态,而是通过多个转录因子家族(包括Dlx,Msx和Hand)起作用,以建立骨骼分化的动态区域。令人鼓舞的是,从小鼠和斑马鱼到无颚脊椎动物七lamp鳗,这种构图机制在很大程度上是保守的。这意味着脊椎动物面部骨骼的多样化,包括颌骨的进化,在很大程度上是由反向咽DV模式化程序下游的修饰所驱动的。

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