Allen Aaron M, Neville Megan C, Birtles Sebastian, Croset Vincent, Treiber Christoph Daniel, Waddell Scott, Goodwin Stephen F
Centre for Neural Circuits and Behaviour, University of Oxford, Oxford, United Kingdom.
Elife. 2020 Apr 21;9:e54074. doi: 10.7554/eLife.54074.
The ventral nerve cord (VNC) receives and processes descending signals from the brain to produce a variety of coordinated locomotor outputs. It also integrates sensory information from the periphery and sends ascending signals to the brain. We used single-cell transcriptomics to generate an unbiased classification of cellular diversity in the VNC of five-day old adult flies. We produced an atlas of 26,000 high-quality cells, representing more than 100 transcriptionally distinct cell types. The predominant gene signatures defining neuronal cell types reflect shared developmental histories based on the neuroblast from which cells were derived, as well as their birth order. The relative position of cells along the anterior-posterior axis could also be assigned using adult Hox gene expression. This single-cell transcriptional atlas of the adult fly VNC will be a valuable resource for future studies of neurodevelopment and behavior.
腹神经索(VNC)接收并处理来自大脑的下行信号,以产生各种协调的运动输出。它还整合来自外周的感觉信息,并向大脑发送上行信号。我们使用单细胞转录组学对五天龄成年果蝇的腹神经索中的细胞多样性进行了无偏分类。我们生成了一个包含26000个高质量细胞的图谱,代表了100多种转录上不同的细胞类型。定义神经元细胞类型的主要基因特征反映了基于细胞来源的神经母细胞及其出生顺序的共同发育历史。沿着前后轴的细胞相对位置也可以使用成年果蝇的Hox基因表达来确定。成年果蝇腹神经索的这个单细胞转录图谱将成为未来神经发育和行为研究的宝贵资源。