Single cell transcriptome atlas of the Drosophila larval brain
Cell diversity of the brain and how it is affected by starvation, remains largely unknown. Here, we introduce a single cell transcriptome atlas of the entire first instar larval brain. We first assigned cell-type identity based on known marker genes, distinguishing five major groups: neural progenit...
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Veröffentlicht in: | eLife 2019-11, Vol.8 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Cell diversity of the brain and how it is affected by starvation, remains largely unknown. Here, we introduce a single cell transcriptome atlas of the entire
first instar larval brain. We first assigned cell-type identity based on known marker genes, distinguishing five major groups: neural progenitors, differentiated neurons, glia, undifferentiated neurons and non-neural cells. All major classes were further subdivided into multiple subtypes, revealing biological features of various cell-types. We further assessed transcriptional changes in response to starvation at the single-cell level. While after starvation the composition of the brain remains unaffected, transcriptional profile of several cell clusters changed. Intriguingly, different cell-types show very distinct responses to starvation, suggesting the presence of cell-specific programs for nutrition availability. Establishing a single-cell transcriptome atlas of the larval brain provides a powerful tool to explore cell diversity and assess genetic profiles from developmental, functional and behavioral perspectives. |
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ISSN: | 2050-084X 2050-084X |
DOI: | 10.7554/elife.50354 |