Tabula Microcebus: A transcriptomic cell atlas of mouse lemur, an emerging primate model organism
The Tabula Microcebus Consortium, ; Ezran, C.; Liu, S.; Chang, S.; Ming, J.; Botvinnik, O.; Penland, L.; Tarashansky, A.; de Morree, A.; Travaglini, K. J.; Hasegawa, K.; Sin, H.; Sit, R.; Okamoto, J.; Sinha, R.; Zhang, Y.; Karanewsky, C. J.; Pendleton, J. L.; Morri, M.; Perret, M.; Aujard, F.; Stryer, L.; Artandi, S.; Fuller, M.; Weissman, I. L.; Rando, T. A.; Ferrell, J. E.; Wang, B.; De Vlaminck, I.; Yang, C.; Casey, K. M.; Albertelli, M. A.; Pisco, A. O.; Karkanias, J.; Neff, N.; Wu, A.; Quake, S. R.; Krasnow, M. A.
Show abstract
Mouse lemurs are the smallest, fastest reproducing, and among the most abundant primates, and an emerging model organism for primate biology, behavior, health and conservation. Although much has been learned about their physiology and their Madagascar ecology and phylogeny, little is known about their cellular and molecular biology. Here we used droplet- and plate-based single cell RNA-sequencing to profile 226,000 cells from 27 mouse lemur organs and tissues opportunistically procured from four donors clinically and histologically characterized. Using computational cell clustering, integration, and expert cell annotation, we defined and biologically organized over 750 mouse lemur molecular cell types and their full gene expression profiles. These include cognates of most classical human cell types, including stem and progenitor cells, and the developmental programs for spermatogenesis, hematopoiesis, and other adult tissues. We also described dozens of previously unidentified or sparsely characterized cell types and subtypes. We globally compared cell type expression profiles to define the molecular relationships of cell types across the body, and explored primate cell and gene expression evolution by comparing mouse lemur cell transcriptomes to those of human, mouse, and macaque. This revealed cell type specific patterns of primate specialization, as well as many cell types and genes for which lemur provides a better human model than mouse. The atlas provides a cellular and molecular foundation for studying this primate model organism, and establishes a general approach for other emerging model organisms.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A reference single-cell regulomic and transcriptomic map of cynomolgus monkeys 97%
- TAD Evolutionary and functional characterization reveals diversity in mammalian TAD boundary properties and function 97%
- Cellular and transcriptional trajectories of neural fate specification in sea anemone uncover two modes of adult neurogenesis 97%
Similar papers in this journal
- Systematic cell-type resolved transcriptomes of 8 tissues in 8 lab and wild-derived mouse strains captures global and local expression variation 97%
- Normal and cancer tissues are accurately characterised by intergenic transcription at RNA polymerase 2 binding sites 96%
- Cystatin C is glucocorticoid-responsive, directs recruitment of Trem2+ macrophages and predicts failure of cancer immunotherapy 96%
Similar papers in this journal
- Mapping single-cell atlases throughout Metazoa unravels cell type evolution 96%
- Molecular, Cellular, and Developmental Organization of the Mouse Vomeronasal Organ at Single Cell Resolution 96%
- Comprehensive profiling of migratory primordial germ cells reveals niche-specific differences in non-canonical Wnt and Nodal-Lefty signaling in anterior vs posterior migrants 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.