Montagne J, Groppe J, Guillemin K, Krasnow M A, Gehring W J, Affolter M
Department of Cell Biology, Biozentrum, University of Basel, Switzerland.
Development. 1996 Sep;122(9):2589-97. doi: 10.1242/dev.122.9.2589.
The adult Drosophila wing is formed by an epithelial sheet, which differentiates into two non-neural tissues, vein or intervein. A large number of genes, many of them encoding components of an EGF-receptor signaling pathway, have previously been shown to be required for differentiation of vein tissue. Much less is known about the molecular control of intervein differentiation. Here we report that the Drosophila homolog of the mammalian Serum Response Factor gene (DSRF), which encodes a MADS-box containing transcriptional regulator, is expressed in the future intervein tissue of wing imaginal discs. In adult flies carrying only one functional copy of the DSRF gene, additional vein tissue develops in the wing, indicating that DSRF is required to spatially restrict the formation of veins. In mitotic clones lacking DSRF, intervein tissue fails to differentiate and becomes vein-like in appearance. Genetic and molecular evidence demonstrates that DSRF is encoded by the blistered locus, which produces ectopic veins and blistered wings when mutant. Our results show that DSRF plays a dual role during wing differentiation. It acts in a dosage-dependent [correction of dosage-dependant] manner to suppress the formation of wing veins and is required cell-autonomously to promote the development of intervein cells. We propose that DSRF acts at a key step between regulatory genes that define the early positional values in the developing wing disc and the subsequent localized expression of intervein-specific structural genes.
成年果蝇的翅膀由上皮细胞层构成,该细胞层分化为两种非神经组织,即翅脉或翅脉间组织。此前已表明,大量基因(其中许多基因编码表皮生长因子受体信号通路的组成成分)是翅脉组织分化所必需的。而对于翅脉间组织分化的分子调控,我们了解得则少得多。在此,我们报告称,哺乳动物血清反应因子基因(DSRF)在果蝇中的同源基因,编码一种含MADS盒的转录调节因子,在翅成虫盘未来的翅脉间组织中表达。在仅携带一个功能性DSRF基因拷贝的成年果蝇中,翅膀中会发育出额外的翅脉组织,这表明DSRF对于在空间上限制翅脉的形成是必需的。在缺乏DSRF的有丝分裂克隆中,翅脉间组织无法分化,外观变得类似翅脉。遗传学和分子学证据表明,DSRF由起泡基因座编码,该基因座发生突变时会产生异位翅脉和起泡的翅膀。我们的结果表明,DSRF在翅膀分化过程中发挥双重作用。它以剂量依赖的方式抑制翅脉的形成,并且在细胞自主的情况下是促进翅脉间细胞发育所必需的。我们提出,DSRF在定义发育中的翅成虫盘早期位置值的调控基因与随后翅脉间特异性结构基因的局部表达之间的关键步骤中发挥作用。