Frasch M, Levine M
Department of Biological Sciences, Fairchild Center, Columbia University, New York, New York 10027.
Genes Dev. 1987 Nov;1(9):981-95. doi: 10.1101/gad.1.9.981.
We have examined the position-dependent expression of two segmentation genes that contain a homeo box, even-skipped (eve) and fushi tarazu (ftz). Products encoded by both genes accumulate in a series of seven transverse stripes along the anterior-posterior body axis of developing embryos. Double-staining experiments show that eve and ftz proteins accumulate in complementary sets of embryonic cells. A total of eight zygotically active segmentation genes are required for the establishment and refinement of the eve and ftz expression patterns during development. Mutations that affect one of the genes were always found to produce a reciprocal alteration in the other. These results suggest that the eve and ftz promoters independently "interpret" the same positional cues to give differential patterns of expression. We propose that a combination of segmentation gene products that activates the expression of eve represses the expression of ftz, and vice versa. This proposal is discussed in the context of a hierarchy of interactions among segmentation genes, whereby the gap genes establish asymmetric patterns of eve and ftz expression in blastoderm-stage embryos, and interactions with other pair-rule genes serve to refine further the complementarity of eve and ftz expression during gastrulation and germ band elongation.
我们研究了两个含有同源异型框的体节基因——“偶数缺口”(eve)和“成对规则”(ftz)——的位置依赖性表达。这两个基因编码的产物沿着发育中胚胎的前后体轴,在一系列七条横向条纹中积累。双重染色实验表明,eve和ftz蛋白在互补的胚胎细胞组中积累。在发育过程中,eve和ftz表达模式的建立和细化总共需要八个合子激活的体节基因。总是发现影响其中一个基因的突变会在另一个基因中产生相反的改变。这些结果表明,eve和ftz启动子独立地“解读”相同的位置线索,以产生不同的表达模式。我们提出,激活eve表达的体节基因产物组合会抑制ftz的表达,反之亦然。这一观点将在体节基因之间相互作用的层次结构背景下进行讨论,即间隙基因在囊胚期胚胎中建立eve和ftz表达的不对称模式,并且与其他成对规则基因的相互作用有助于在原肠胚形成和胚带延伸期间进一步细化eve和ftz表达的互补性。