Mazet Françoise, Shimeld Sebastian M
School of Animal and Microbial Sciences, The University of Reading, Whiteknights, PO Box 228, Reading RG6 6AJ, UK.
Dev Genes Evol. 2003 Oct;213(10):505-9. doi: 10.1007/s00427-003-0351-7. Epub 2003 Aug 20.
In mouse and chick embryos, cyclic expression of lunatic fringe has an important role in the regulation of mesoderm segmentation. We have isolated a Fringe gene from the protochordate amphioxus. Amphioxus is the closest living relative of the vertebrates, and has mesoderm that is definitively segmented in a manner that is similar to, and probably homologous with, that of vertebrates. AmphiFringe is placed basal to vertebrate Fringe genes in molecular phylogenetic analyses, indicating that the duplications that formed radical-, manic- and lunatic fringe are specific to the vertebrate lineage. AmphiFringe expression was detected in the anterior neural plate of early neurulae, where it resolved into a series of segmental patches by the mid-neurulae stage. No AmphiFringe transcripts were detected in the mesoderm. Based on these observations, we propose a model depicting a successive recruitment of Fringe in the maintenance then regulation of segmentation during vertebrate evolution.
在小鼠和鸡胚胎中,lunatic fringe的周期性表达在中胚层分割的调控中起重要作用。我们从原索动物文昌鱼中分离出一个Fringe基因。文昌鱼是现存与脊椎动物亲缘关系最近的物种,其具有以类似于脊椎动物且可能与之同源的方式明确分割的中胚层。在分子系统发育分析中,AmphiFringe位于脊椎动物Fringe基因的基部,这表明形成radical-、manic-和lunatic fringe的基因重复是脊椎动物谱系特有的。在早期神经胚的前神经板中检测到AmphiFringe的表达,到神经胚中期它分化为一系列节段性斑块。在中胚层中未检测到AmphiFringe转录本。基于这些观察结果,我们提出了一个模型,描述了在脊椎动物进化过程中Fringe在维持然后调控分割过程中的相继招募。