Schubiger Gerold
Department of Zoology, University of Washington, USA.
Wilhelm Roux Arch Entwickl Mech Org. 1974 Dec;174(4):303-311. doi: 10.1007/BF00579118.
When first leg imaginai discs from early third instar larvae are forced to differentiate immediately by transplantation into larval hosts ready to pupate, they fail to differentiate all the adult leg structures. Even though the variability among these incomplete differentiations is wide, we were able to draw the following conclusions. Even if only little differentiations, limited to a few hairs and bristles, were observed, the structures were always identifiable as the most proximal and the most distal structures of the leg. In those cases where differentiation was more complete the tarsal segments were never completely separated; in extreme cases all five segments were fused. The segments more proximal than the tarsus were always separated when differentiation occurred, but not all the structures within the segments were formed. The absence of a particular structure in an incompletely differentiated segment seems to occur in a random way and is not dependent on its location within the disc.
当将来自三龄幼虫早期的第一腿假想盘通过移植到即将化蛹的幼虫宿主中而被迫立即分化时,它们无法分化出所有的成虫腿部结构。尽管这些不完全分化之间的变异性很大,但我们能够得出以下结论。即使只观察到很少的分化,仅限于一些刚毛和鬃毛,这些结构也总是可以被识别为腿部最近端和最远端的结构。在那些分化更完全的情况下,跗节从未完全分离;在极端情况下,所有五个节段都融合在一起。当发生分化时,比跗节更靠近近端的节段总是会分离,但节段内并非所有结构都形成。在不完全分化的节段中特定结构的缺失似乎是随机发生的,并不取决于其在盘中的位置。