Nassif Claude, Noveen Alexander, Hartenstein Volker
Department of Molecular Cell and Developmental Biology, University of California Los Angeles, Los Angeles, California 90095, USA.
J Comp Neurol. 2003 Jan 20;455(4):417-34. doi: 10.1002/cne.10482.
The Drosophila N-CAM homolog Fasciclin II (FasII) is expressed during the embryonic period in a subset of central neurons that pioneer the neuropile of the larval brain. Toward the end of embryogenesis, FasII expression in axon tracts diminishes but resumes from the late first larval instar in an increasingly complex pattern of axon tracts that join the tracts laid down in the embryo. We present evidence that FasII is expressed in a major fraction of the long axon tracts that interconnect different domains of the larval brain. For many tracts, FasII expression remains stable throughout larval development and pupal development. Therefore, the FasII pattern of axon tracts, along with the mushroom body and optic lobe, both of which are also FasII-positive, represents a useful set of landmarks that define different regions in the Drosophila brain throughout development. In this study, serial confocal brain sections were used to generate digital three-dimensional models of larval axon tracts at different stages. These models form part of our effort to generate an anatomic framework of Drosophila larval brain structure required for accurate localization of gene expression and gene function in experimental studies of neural development.
果蝇的神经细胞黏附分子(N-CAM)同源物Fasciclin II(FasII)在胚胎期表达于一部分中枢神经元,这些神经元是幼虫脑髓质的先驱。在胚胎发育接近尾声时,轴突束中的FasII表达减少,但从一龄幼虫后期开始恢复,且在连接胚胎期形成的轴突束时呈现出越来越复杂的模式。我们提供的证据表明,FasII在连接幼虫脑不同区域的大部分长轴突束中表达。对于许多轴突束而言,FasII的表达在整个幼虫发育和蛹发育过程中保持稳定。因此,轴突束的FasII模式,连同同样为FasII阳性的蘑菇体和视叶,构成了一组有用的标志物,可在果蝇发育的整个过程中定义其大脑的不同区域。在本研究中,连续共聚焦脑切片被用于生成不同阶段幼虫轴突束的数字三维模型。这些模型是我们为生成果蝇幼虫脑结构解剖框架所做努力的一部分,该框架是在神经发育实验研究中准确定位基因表达和基因功能所必需的。