Morimura S, Maves L, Chen Y, Hoffmann F M
McArdle Laboratory for Cancer Research and Laboratory of Genetics, University of Wisconsin Medical School, Madison, Wisconsin, 53706, USA.
Dev Biol. 1996 Jul 10;177(1):136-51. doi: 10.1006/dbio.1996.0151.
We have used the GAL4-UAS expression system to increase the level of expression of the Drosophila gene decapentaplegic (dpp) in a pattern approximating its normal pattern in leg and wing imaginal discs. Intermediate increases of dpp expression have little effect in wing discs but high levels of dpp overexpression lead to reduction of the scutellum and duplication of posterior wing structures. In leg discs intermediate increases cause supernumerary outgrowths of ventral leg structures in the anterior-ventral region. Greater increases of dpp expression cause the loss of ventral leg structures with the concomitant fusion of left and right dorsal forelegs. The defects observed in both legs and wings appear to arise through dose-dependent effects of dpp on wingless (wg) expression. A high level of dpp overexpression in the wing disc causes reduction of wg expression in the presumptive scutellar region, consistent with the subsequent reduction of the scutellum. An intermediate increase of dpp expression in leg discs induces the expansion of wg expression into the ventral outgrowths. At higher dpp expression levels, ventral wg expression in leg discs is eliminated, consistent with the loss of ventral leg cuticle. In the leg disc end knob and in the wing margin primordium, where wg and dpp cooperate in producing distal outgrowth, dpp overexpression has no detectable effect either on patterning or on wg expression. We propose that a critical role for dpp in other regions of the leg and wing discs is to reduce or block the expression of wg. This role of dpp is supported by the observation that ectopic wg expression is detected in imaginal discs where dpp signaling is compromised by lowering the activity of one of its receptors, tkv. This antagonism between dpp and wg expression may be critical to assigning only one disc region as the distal organizer.
我们利用GAL4-UAS表达系统,以接近其在腿部和翅成虫盘正常表达模式的方式,提高果蝇基因“五体不全”(dpp)的表达水平。dpp表达的中等程度增加对翅成虫盘影响不大,但dpp的高水平过表达会导致小盾片减少和翅后缘结构重复。在腿部成虫盘中,中等程度的增加会导致腹侧腿部结构在前腹侧区域出现多余的生长。dpp表达的进一步增加会导致腹侧腿部结构缺失,同时左右背侧前腿融合。在腿部和翅部观察到的缺陷似乎是由于dpp对无翅(wg)表达的剂量依赖性效应引起的。翅成虫盘中dpp的高水平过表达会导致假定小盾片区域wg表达减少,这与随后小盾片的减少一致。腿部成虫盘中dpp表达的中等程度增加会诱导wg表达扩展到腹侧生长部位。在更高的dpp表达水平下,腿部成虫盘中腹侧wg表达消失,这与腹侧腿部表皮的缺失一致。在腿部成虫盘末端瘤和翅边缘原基中,wg和dpp协同产生远端生长,dpp过表达对图案形成或wg表达均无明显影响。我们提出,dpp在腿部和翅成虫盘其他区域的关键作用是减少或阻断wg的表达。dpp的这一作用得到了以下观察结果的支持:在通过降低其一种受体tkv的活性而使dpp信号传导受损的成虫盘中,检测到异位wg表达。dpp和wg表达之间的这种拮抗作用对于仅将一个盘区域指定为远端组织者可能至关重要。