Department of Zoology, Charles University in Prague, 128 44 Prague, Czech Republic.
Proc Natl Acad Sci U S A. 2010 Oct 5;107(40):17262-7. doi: 10.1073/pnas.1009304107. Epub 2010 Sep 20.
The appearance of jaws was a turning point in vertebrate evolution because it allowed primitive vertebrates to capture and process large, motile prey. The vertebrate jaw consists of separate dorsal and ventral skeletal elements connected by a joint. How this structure evolved from the unjointed gill bar of a jawless ancestor is an unresolved question in vertebrate evolution. To understand the developmental bases of this evolutionary transition, we examined the expression of 12 genes involved in vertebrate pharyngeal patterning in the modern jawless fish lamprey. We find nested expression of Dlx genes, as well as combinatorial expression of Msx, Hand and Gsc genes along the dorso-ventral (DV) axis of the lamprey pharynx, indicating gnathostome-type pharyngeal patterning evolved before the appearance of the jaw. In addition, we find that Bapx and Gdf5/6/7, key regulators of joint formation in gnathostomes, are not expressed in the lamprey first arch, whereas Barx, which is absent from the intermediate first arch in gnathostomes, marks this domain in lamprey. Taken together, these data support a new scenario for jaw evolution in which incorporation of Bapx and Gdf5/6/7 into a preexisting DV patterning program drove the evolution of the jaw by altering the identity of intermediate first-arch chondrocytes. We present this "Pre-pattern/Cooption" model as an alternative to current models linking the evolution of the jaw to the de novo appearance of sophisticated pharyngeal DV patterning.
颚的出现是脊椎动物进化的一个转折点,因为它使原始脊椎动物能够捕捉和处理大型、运动的猎物。脊椎动物的颚由单独的背侧和腹侧骨骼元素通过关节连接而成。这种结构是如何从无关节的下颚祖先的鳃弓演变而来的,这是脊椎动物进化中一个未解决的问题。为了了解这种进化转变的发育基础,我们检查了 12 个参与现代无颚鱼七鳃鳗咽部模式形成的基因在现代无颚鱼七鳃鳗中的表达。我们发现 Dlx 基因的嵌套表达,以及 Msx、Hand 和 Gsc 基因沿七鳃鳗咽部的背腹(DV)轴的组合表达,表明颌骨型咽部模式形成在颚的出现之前就已经进化了。此外,我们发现 Bapx 和 Gdf5/6/7,颌骨形成的关键调节因子,在七鳃鳗的第一弓中不表达,而 Barx 在颌骨的中间第一弓中缺失,在七鳃鳗中标记这个区域。总之,这些数据支持了一种新的颚进化情景,即 Bapx 和 Gdf5/6/7 被纳入一个预先存在的 DV 模式形成程序中,通过改变中间第一弓软骨细胞的身份,推动了颚的进化。我们提出了这个“预模式/共适应”模型,作为将颚的进化与复杂咽部 DV 模式形成的新出现联系起来的现有模型的替代方案。