| Literature DB >> 31939737 |
Fred P Davis1,2, Aljoscha Nern1, Serge Picard1, Michael B Reiser1, Gerald M Rubin1, Sean R Eddy1,3,4, Gilbert L Henry1,5.
Abstract
The anatomy of many neural circuits is being characterized with increasing resolution, but their molecular properties remain mostly unknown. Here, we characterize gene expression patterns in distinct neural cell types of the Drosophila visual system using genetic lines to access individual cell types, the TAPIN-seq method to measure their transcriptomes, and a probabilistic method to interpret these measurements. We used these tools to build a resource of high-resolution transcriptomes for 100 driver lines covering 67 cell types, available at http://www.opticlobe.com. Combining these transcriptomes with recently reported connectomes helps characterize how information is transmitted and processed across a range of scales, from individual synapses to circuit pathways. We describe examples that include identifying neurotransmitters, including cases of apparent co-release, generating functional hypotheses based on receptor expression, as well as identifying strong commonalities between different cell types.Entities:
Keywords: D. melanogaster; gene expression; genetics; genomics; neural circuit; neuroscience; visual system
Mesh:
Year: 2020 PMID: 31939737 PMCID: PMC7034979 DOI: 10.7554/eLife.50901
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140