Jan Y N, Ghysen A, Christoph I, Barbel S, Jan L Y
J Neurosci. 1985 Sep;5(9):2453-64. doi: 10.1523/JNEUROSCI.05-09-02453.1985.
We have followed the formation of neuronal pathways in different imaginal discs of Drosophila. The pattern is highly reproducible for a given disc type but distinct for each type of discs: in leg discs, several neurons are present before metamorphosis and provide two major pathways that are joined by later neurons; in the wing and haltere discs, a few pairs of neurons appear after the onset of metamorphosis and pioneer the major pathways; in antenna discs, no pioneers are detected before massive neuronal differentiation begins. The mechanisms used for axonal guidance seem common to all discs, and the differences between discs can be accounted for simply by differences in the arrangement and birth time of pioneer neurons. Different subsets of pioneer neurons are deleted by mutations such as scute and engrailed.
我们追踪了果蝇不同成虫盘神经元通路的形成过程。对于给定类型的成虫盘,其模式具有高度可重复性,但每种类型的成虫盘又各有不同:在腿成虫盘中,有几个神经元在变态前就已存在,并提供两条主要通路,后来的神经元会连接这两条通路;在翅和平衡棒成虫盘中,几对神经元在变态开始后出现,并开辟主要通路;在触角成虫盘中,在大量神经元分化开始之前未检测到先驱神经元。轴突导向所使用的机制似乎在所有成虫盘中都是相同的,而成虫盘之间的差异可以简单地由先驱神经元的排列和产生时间的差异来解释。先驱神经元的不同亚群会因诸如“scute”和“engrailed”等突变而缺失。