Soffers Jelly Hm, Beck Erin, Sytkowski Daniel J, Maughan Marianne E, Devarakonda Devasri, Zhu Yi, Wilson Beth, David Chen Yu-Chieh, Erclik Ted, Truman James W, Skeath James B, Lacin Haluk
bioRxiv. 2025 Apr 28:2024.11.27.625713. doi: 10.1101/2024.11.27.625713.
Understanding developmental changes in neuronal lineages is crucial to elucidate how they assemble into functional neural networks. Studies investigating nervous system development in model systems have only focused on select regions of the central nervous system due to the limited availability of genetic drivers that target specific neuronal lineages throughout development and adult life. This has hindered our understanding of how distinct neuronal lineages interconnect to form neuronal circuits during development. Here, we present a split-GAL4 library composed of genetic driver lines, which we generated via editing the genomic locus of lineage-specific transcription factors and demonstrate that we can use this library to specifically target most individual neuronal hemilineages in the ventral nerve cord (VNC) throughout development and into adulthood. Using these genetic driver lines, we found striking morphological changes in neuronal processes within a lineage during metamorphosis. We also demonstrated how neurochemical features of neuronal classes can be quickly assessed. Lastly, we documented behaviors elicited in response to optogenetic activation of individual neuronal lineages and generated a comprehensive lineage-behavior map of the entire fly VNC. Looking forward, this lineage-specific split-GAL4 driver library will provide the genetic tools needed to address the questions emerging from the analysis of the recent VNC connectome and transcriptome datasets.
了解神经元谱系的发育变化对于阐明它们如何组装成功能性神经网络至关重要。由于在整个发育和成年期针对特定神经元谱系的遗传驱动因素有限,在模型系统中研究神经系统发育的研究仅集中于中枢神经系统的特定区域。这阻碍了我们对不同神经元谱系在发育过程中如何相互连接形成神经元回路的理解。在这里,我们展示了一个由遗传驱动系组成的分裂GAL4文库,该文库是通过编辑谱系特异性转录因子的基因组位点生成的,并证明我们可以使用该文库在整个发育过程直至成年期特异性靶向腹侧神经索(VNC)中的大多数单个神经元半谱系。使用这些遗传驱动系,我们发现变态过程中一个谱系内的神经元突起发生了显著的形态变化。我们还展示了如何快速评估神经元类别的神经化学特征。最后,我们记录了个体神经元谱系的光遗传学激活引发的行为,并生成了整个果蝇VNC的综合谱系-行为图谱。展望未来,这个谱系特异性分裂GAL4驱动文库将提供所需的遗传工具,以解决从最近的VNC连接组和转录组数据集分析中出现的问题。