Department of Biology, New York University, New York, NY, United States.
Department of Biology, New York University, New York, NY, United States.
Curr Top Dev Biol. 2020;139:89-125. doi: 10.1016/bs.ctdb.2020.02.010. Epub 2020 Apr 7.
The Drosophila visual system integrates input from 800 ommatidia and extracts different features in stereotypically connected optic ganglia. The development of the Drosophila visual system is controlled by gene regulatory networks that control the number of precursor cells, generate neuronal diversity by integrating spatial and temporal information, coordinate the timing of retinal and optic lobe cell differentiation, and determine distinct synaptic targets of each cell type. In this chapter, we describe the known gene regulatory networks involved in the development of the different parts of the visual system and explore general components in these gene networks. Finally, we discuss the advantages of the fly visual system as a model for gene regulatory network discovery in the era of single-cell transcriptomics.
果蝇的视觉系统整合了 800 个小眼的输入信息,并在定型连接的视神经节中提取不同的特征。果蝇视觉系统的发育受基因调控网络的控制,这些网络控制前体细胞的数量,通过整合空间和时间信息产生神经元多样性,协调视网膜和视叶细胞分化的时间,并确定每个细胞类型的独特突触靶点。在本章中,我们描述了参与视觉系统不同部分发育的已知基因调控网络,并探讨了这些基因网络中的一般成分。最后,我们讨论了蝇类视觉系统作为单细胞转录组学时代基因调控网络发现模型的优势。