Sulston I A, Anderson K V
Department of Molecular and Cell Biology, University of California, Berkeley.
Dev Genet. 1998;23(1):56-64. doi: 10.1002/(SICI)1520-6408(1998)23:1<56::AID-DVG6>3.0.CO;2-5.
Embryos homozygous for the godzilla, jaws, or kraken mutations of Tribolium castaneum have characteristic defects in segmentation. Here, we examine the expression of Tribolium genes homologous to Drosophila segmentation genes in these mutants to define similarities and differences in the process of segmentation in the two insects. The godzilla mutation disrupts segmentation and alters the expression of Even-skipped (Eve) throughout the germ band. godzilla, therefore, acts at an early step in the segmentation gene hierarchy; the evidence suggests it could be the Tribolium homologue of the eve gene. The jaws mutation causes deletion of most of the abdomen; this defect appears to be correlated with the failure of Eve to resolve into a striped pattern of expression, jaws also causes homeotic transformations in the thorax and the first abdominal segment; this transformation is accompanied by ectopic expression of the homeotic gene maxillopedia in the transformed segments. The kraken mutant disrupts patterning within each segment and, like Drosophila segment polarity mutants, disrupts the maintenance of the normal expression domain of Engrailed. This analysis suggests that late stages of segmentation are similar in Tribolium and Drosophila, although there are clear differences in early steps of segmentation in the two insects.
杂拟谷盗(Tribolium castaneum)的哥斯拉(godzilla)、颚部(jaws)或海怪(kraken)突变的纯合胚胎在体节形成上有特征性缺陷。在此,我们检测了杂拟谷盗中与果蝇体节形成基因同源的基因在这些突变体中的表达,以确定这两种昆虫在体节形成过程中的异同。哥斯拉突变破坏体节形成,并改变了整个胚带中偶数缺口(Even-skipped,Eve)的表达。因此,哥斯拉在体节形成基因层级中作用于早期步骤;证据表明它可能是偶数缺口基因的杂拟谷盗同源物。颚部突变导致大部分腹部缺失;这种缺陷似乎与Eve未能形成条纹状表达模式有关,颚部突变还导致胸部和第一腹节发生同源异型转化;这种转化伴随着同源异型基因大颚足(maxillopedia)在转化节段中的异位表达。海怪突变体破坏每个节段内的模式形成,并且像果蝇节段极性突变体一样,破坏 engrailed正常表达结构域的维持。该分析表明,杂拟谷盗和果蝇在体节形成的后期阶段相似,尽管这两种昆虫在体节形成的早期步骤存在明显差异。