Carroll S B, DiNardo S, O'Farrell P H, White R A, Scott M P
Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder 80309-0347.
Genes Dev. 1988 Mar;2(3):350-60. doi: 10.1101/gad.2.3.350.
The specification of segment number and identity in the Drosophila embryo requires the activity of several classes of genes that may be grouped according to the array of pattern elements that they control. Double-label immunofluorescence was used to simultaneously localize the products of genes representative of the pair-rule segmentation class (fushi tarazu), the segment polarity class (engrailed), and the homeotic class (Sex combs reduced, Antennapedia, and Ultrabithorax) of pattern-regulating genes. The temporal order of appearance of each class of proteins and the precise spatial relationships between the products of the different genes are described with single-cell resolution. Boundaries of gene expression, particularly the parasegmental boundaries, are established by early-acting genes such as fushi tarazu and subsequently respected by the expression patterns of later appearing gene products such as engrailed and Ultrabithorax, suggesting regulatory relationships between certain pairs of genes. In addition, the dynamic transitions observed in spatial relationship among the Sex combs reduced, Antennapedia, and Ultrabithorax homeotic protein patterns during the early period of embryogenesis may reflect cross-regulatory interactions among these genes. Finally, some cells contain a single homeotic product, whereas other cells simultaneously contain several, suggesting that certain cells may be determined by the combinatorial action of homeotic genes.
果蝇胚胎中体节数量和特征的确定需要几类基因的活性,这些基因可根据它们所控制的模式元件阵列进行分组。采用双标记免疫荧光法同时定位模式调控基因中代表体节极性类(engrailed)、配对规则体节类(fushi tarazu)和同源异型类(Sex combs reduced、Antennapedia和Ultrabithorax)的基因产物。以单细胞分辨率描述了每类蛋白质出现的时间顺序以及不同基因产物之间精确的空间关系。基因表达边界,特别是副体节边界,由早期作用的基因如fushi tarazu建立,随后被后期出现的基因产物如engrailed和Ultrabithorax的表达模式所遵循,这表明某些基因对之间存在调控关系。此外,在胚胎发育早期,Sex combs reduced、Antennapedia和Ultrabithorax同源异型蛋白模式之间观察到的空间关系动态转变可能反映了这些基因之间的交叉调控相互作用。最后,一些细胞只含有一种同源异型产物,而其他细胞同时含有几种,这表明某些细胞可能由同源异型基因的组合作用所决定。