Torras Raquel, González-Crespo Sergio
Institut de Biologia Molecular de Barcelona, CSIC, Barcelona, Spain.
Int J Dev Biol. 2005;49(7):895-9. doi: 10.1387/ijdb.051980rt.
Cnidarians are primitive animals located in a basal position in the phylogenetic tree of the Animal Kingdom, as an outgroup of the Bilaterians. Therefore, studies on cnidarian developmental biology may illustrate how fundamental developmental processes have originated and changed during animal evolution. A particular example of this is the establishment of polarity along the body axes, which is under the control of a number of developmental genes, most of them conserved in evolution and playing similar roles in diverged species. Concerning the anterior-posterior axis, genetic and molecular studies on Drosophila have shown that the nanos gene plays an essential role in defining posterior structures during early embryonic development. Here we report the isolation of two nanos orthologs in the anthozoan Nematostella vectensis. We show that nanos mRNA is asymmetrically distributed in the fertilized egg and this asymmetry is maintained during embryonic development. At gastrula and planula larva stages, nanos expression is permanently associated with posterior body regions. These results, together with our previous analysis in the hydrozoan Podocoryne carnea, indicate that posterior nanos expression during development is a conserved feature among cnidarians. Therefore, the potential role of cnidarian nanos in defining axial polarity as a posterior determinant would represent an ancestral trait in the Animal Kingdom.
刺胞动物是原始动物,在动物界系统发育树中处于基部位置,是两侧对称动物的外类群。因此,对刺胞动物发育生物学的研究可能会阐明基本的发育过程在动物进化过程中是如何起源和变化的。一个特别的例子是沿身体轴建立极性,这受许多发育基因的控制,其中大多数在进化中保守,并在不同物种中发挥类似作用。关于前后轴,对果蝇的遗传和分子研究表明,nanos基因在早期胚胎发育过程中定义后部结构方面起着至关重要的作用。在此,我们报告在珊瑚虫纲的星状海葵中分离出两个nanos直系同源基因。我们表明,nanos mRNA在受精卵中不对称分布,并且这种不对称在胚胎发育过程中得以维持。在原肠胚和浮浪幼虫阶段,nanos表达始终与身体后部区域相关。这些结果,连同我们之前对水螅纲的卡氏柄海鞘的分析,表明发育过程中nanos在后部的表达是刺胞动物中的一个保守特征。因此,刺胞动物nanos作为后部决定因素在定义轴极性方面的潜在作用可能代表了动物界的一个祖先特征。