Navet Sandra, Andouche Aude, Baratte Sébastien, Bonnaud Laure
Muséum National d'Histoire Naturelle, Département Milieux et Peuplements Aquatiques, Laboratoire Biologie des ORganismes et Ecosystèmes Aquatiques, UMR MNHN USM 401, CNRS 7208, IRD 207, UPMC, Paris, France.
Gene Expr Patterns. 2009 Oct;9(7):461-7. doi: 10.1016/j.gep.2009.08.001. Epub 2009 Aug 13.
Cephalopods show a very complex nervous system, particularly derived when compared to other molluscs. In vertebrates, the setting up of the nervous system depends on genes such as Shh and Pax6. In this paper we assess Shh and Pax6 expression patterns during Sepia officinalis development by whole-mount in situ hybridization. In vertebrates, Shh has been shown to indirectly inhibit Pax6. This seems to be the case in cephalopods as the expression patterns of these genes do not overlap during S. officinalis development. Pax6 is expressed in the optic region and brain and Shh in gut structures, as already seen in vertebrates and Drosophila. Thus, both genes show expression in analogous structures in vertebrates. Surprisingly, they also exhibit unconventional expressions such as in gills for Pax6 and ganglia borders for Shh. They are also expressed in many cephalopods' derived characters among molluscs as in arm suckers for Pax6 and beak producing tissues, nuchal organ and neural cord of the arms for Shh. This new data supports the fact that molecular control patterns have evolved with the appearance of morphological novelties in cephalopods as shown in this new model, S. officinalis.
头足类动物具有非常复杂的神经系统,与其他软体动物相比,其神经系统尤其独特。在脊椎动物中,神经系统的建立依赖于诸如Shh和Pax6等基因。在本文中,我们通过整体原位杂交评估了乌贼发育过程中Shh和Pax6的表达模式。在脊椎动物中,Shh已被证明可间接抑制Pax6。在头足类动物中似乎也是如此,因为在乌贼发育过程中这些基因的表达模式并不重叠。Pax6在视觉区域和大脑中表达,而Shh在肠道结构中表达,这在脊椎动物和果蝇中已被观察到。因此,这两个基因在脊椎动物的类似结构中都有表达。令人惊讶的是,它们还表现出非常规的表达,如Pax6在鳃中表达,Shh在神经节边界表达。它们还在许多头足类动物相对于软体动物的衍生特征中表达,如Pax6在腕吸盘、Shh在喙产生组织、颈器官和腕神经索中表达。这些新数据支持了这样一个事实,即分子控制模式随着头足类动物形态新奇性的出现而进化,如在这个新模型——乌贼中所示。