Bayascas J R, Castillo E, Saló E
Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, Diagonal 645, E-08071 Barcelona, Spain.
Dev Genes Evol. 1998 Oct;208(8):467-73. doi: 10.1007/s004270050204.
In recent years the characterization of Hox genes in different phyla has led to the suggestion of a universal role for these genes in animal axis determination. Some phyla, such as Platyhelminthes, have not yielded easily to such analysis, although a range of Hox genes have been shown to be present. In this report we present data concerning the relatively large number of Hox genes with a close similarity to representatives of annelids, supporting a phylogenetic clustering of Platyhelminthes within the spiralian protostomes. We also point out the permanent presence of Hox transcripts in adult planarians, with two classes distinguishable by their different patterns of axial expression: some are expressed uniformly, whilst a second group shows a nested expression with graded anterior expression boundaries. During posterior regeneration the nested Hox genes increase differentially depending on the level of sectioning, and then turn on gradually to recover the differential axial pattern of intact adults. These molecular results and others at the cellular level support the previous hypothesis that Platyhelminthes may have become simplified by progenesis.
近年来,不同门类中Hox基因的特征分析表明,这些基因在动物轴的确定中具有普遍作用。尽管已证明一些门类(如扁形动物门)存在一系列Hox基因,但它们并不容易进行此类分析。在本报告中,我们提供了关于大量与环节动物代表具有密切相似性的Hox基因的数据,支持扁形动物门在螺旋形原口动物中的系统发育聚类。我们还指出,成年涡虫中Hox转录本持续存在,其中两类可通过其不同的轴向表达模式区分:一些均匀表达,而另一组则呈现嵌套表达,具有分级的前部表达边界。在后再生过程中,嵌套的Hox基因根据切片水平差异增加,然后逐渐开启以恢复完整成虫的差异轴向模式。这些分子结果以及细胞水平的其他结果支持了先前的假设,即扁形动物门可能通过幼态成熟而变得简化。