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Classifying Drosophila Olfactory Projection Neuron Subtypes by Single-cell RNA Sequencing

Hongjie Li, Felix Horns, Bing Wu, Qijing Xie, Jiefu Li, Tongchao Li, David Luginbuhl, Stephen R. Quake, Liqun Luo
doi: https://doi.org/10.1101/145045
Hongjie Li
1Department of Biology and Howard Hughes Medical Institute
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Felix Horns
2Biophysics Graduate Program
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Bing Wu
1Department of Biology and Howard Hughes Medical Institute
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Qijing Xie
3Neurosciences Graduate Program
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Jiefu Li
1Department of Biology and Howard Hughes Medical Institute
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Tongchao Li
1Department of Biology and Howard Hughes Medical Institute
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David Luginbuhl
1Department of Biology and Howard Hughes Medical Institute
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Stephen R. Quake
4Departments of Bioengineering and Applied Physics and Chan Zuckerberg Biohub Stanford University, Stanford, CA 94305, USA
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  • For correspondence: lluo@stanford.edu quake@stanford.edu
Liqun Luo
1Department of Biology and Howard Hughes Medical Institute
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  • For correspondence: lluo@stanford.edu quake@stanford.edu
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Abstract

How a neuronal cell type is defined and how this relates to its transcriptome are still open questions. The Drosophila olfactory projection neurons (PNs) are among the best-characterized neuronal types: Different PN classes target dendrites to distinct olfactory glomeruli and PNs of the same class exhibit indistinguishable anatomical and physiological properties. Using single-cell RNA-sequencing, we comprehensively characterized the transcriptomes of 40 PN classes and unequivocally identified transcriptomes for 6 classes. We found a new lineage-specific transcription factor that instructs PN dendrite targeting. Transcriptomes of closely-related PN classes exhibit the largest difference during circuit assembly, but become indistinguishable in adults, suggesting that neuronal subtype diversity peaks during development. Genes encoding transcription factors and cell-surface molecules are the most differentially expressed, indicating their central roles in specifying neuronal identity. Finally, we show that PNs use highly redundant combinatorial molecular codes to distinguish subtypes, enabling robust specification of cell identity and circuit assembly.

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Posted June 03, 2017.
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Classifying Drosophila Olfactory Projection Neuron Subtypes by Single-cell RNA Sequencing
Hongjie Li, Felix Horns, Bing Wu, Qijing Xie, Jiefu Li, Tongchao Li, David Luginbuhl, Stephen R. Quake, Liqun Luo
bioRxiv 145045; doi: https://doi.org/10.1101/145045
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Classifying Drosophila Olfactory Projection Neuron Subtypes by Single-cell RNA Sequencing
Hongjie Li, Felix Horns, Bing Wu, Qijing Xie, Jiefu Li, Tongchao Li, David Luginbuhl, Stephen R. Quake, Liqun Luo
bioRxiv 145045; doi: https://doi.org/10.1101/145045

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