Accès ouvert déclaré
2025
article
A molecular cell atlas of mouse lemur, an emerging model primate
Iwijn De Vlaminck, Liza J. Shapiro, Andriamahery Razafindrakoto, Hajanirina Noëline Ravelonjanahary, Patricia C. Wright, Anne D. Yoder, Cathy V. Williams, Robert Schopler, Ute Radespiel, Jean‐Michel Verdier, Corinne Lautier, E. Christopher Kirk, Rebecca Lewis, Astrid Gillich, Zicheng Zhao, Jérémy Terrien, Jacques Epelbaum, Dita Gratzinger, Thomas J. Montine, Jessica D’Addabbo, Isaac Bakerman, Patricia K. Nguyen, Aaron M. Kershner, Karim Mrouj, Philip A. Beachy, Thomas H. Ambrosi, Malachia Hoover, Alina Alam, Charles Chan, SoRi Jang, Peng Li, Andrea R. Yung, Connor V. Duffy, Ed S. Lein, Silvana Konermann, Liqun Luo, Trygve E. Bakken, Justus M. Kebschull, Rebecca D. Hodge, Taichi Isobe, Michael F. Clarke, Biter Bilen, Jean Farup, Andoni Urtasun, Jengmin Kang, Ming Chen, BaoXiang Li, Varun Ramanan Subramaniam, Shravani Mukherjee, Aditi Swarup, Lily Kim, Bronwyn Scott, Ahmad Al‐Moujahed, Albert Y. Wu, Douglas Vollrath, Nicholas Schaum, Amanda L. Wiggenhorn, Tony Wyss‐Coray, Jonathan Z. Long, Yin Liu, Ahmad N. Nabhan, Gabriel B. Loeb, Shengda Lin, Honor Paine, Deviana Burhan, Aris Taychameekiatchai, Bruce Wang, F. Hernán Espinoza, Christin S. Kuo, Ross J. Metzger, Zhen Qi, Rebecca N. Culver, Kerwyn Casey Huang, Patrick Neuhöfer, Charles Chang, Yan Hang, Seung K. Kim, H Weinstein, Paul Allegakoen, Franklin W. Huang, Sivakamasundari, Song Eun Lee, Hannah K. Frank, Scott D. Boyd, Wan-Jin Lu, Ankit S. Baghel, William Kong, Carly Israel, Ashley Maynard, Michelle Tan, Youcef Ouadah, Jalal Baruni, Ting-Hsuan Wu, Robert C. Jones, Spyros Darmanis, Sheela Crasta, Yan Jia, Aditi Agrawal, Shelly Huynh, Brian Yu, James T. Webber, Weilun Tan, Saba Nafees, Zhengda Li, Michael F. Z. Wang, Roozbeh Dehghannasiri, Julia Olivieri, Julia Salzman, Lisbeth A. Guethlein, P Parham, Qiuyu Jing, Jane Antony, Geoff Stanley, Jinxurong Yang, Winston Koh, Sheng Wang, Snigdha Agarwal, Kyle Awayan, Venkata N. P. Vemuri, Pranav V. Lalgudi, Camille Ezran, Shixuan Liu, Stephen Chang, Jingsi Ming, Olga Botvinnik, Lolita Penland, Alexander J. Tarashansky, Kyle J. Travaglini, Jia Zhao, Gefei Wang, Kazuteru Hasegawa, Ho‐Su Sin, Rene Sit, Jennifer Okamoto, Rahul Sinha, Yue Zhang, Caitlin J. Karanewsky, Jozeph L. Pendleton, Maurizio Morri, Martine Perret, Fabienne Aujard, Lubert Stryer, Steven E. Artandi, Margaret T. Fuller, Irving L. Weissman, Thomas A. Rando, James E. Ferrell, Bo Wang, Can Yang, Kerriann M. Casey, Megan A. Albertelli, Angela Oliveira Pisco, Jim Karkanias, Norma Neff, Angela Ruohao Wu, Stephen R. Quake, Mark A. Krasnow
9Citations signalées, ce qui n’est pas une note de qualité
35Institutions déclarées
9Pays d’affiliation déclarés
Rattachement africain : dk, us, Madagascar, de, fr, hk, jp, cn, sg.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Abstract Mouse lemurs are the smallest and fastest reproducing primates, as well as one of the most abundant, and they are emerging as a model organism for primate biology, behaviour, health and conservation. Although much has been learnt about their ecology and phylogeny in Madagascar and their physiology, little is known about their cellular and molecular biology. Here we used droplet-based and plate-based single-cell RNA sequencing to create Tabula Microcebus, a transcriptomic atlas of 226,000 cells from 27 mouse lemur organs opportunistically obtained from four donors clinically and histologically characterized. Using computational cell clustering, integration and expert cell annotation, we define and biologically organize more than 750 lemur molecular cell types and their full gene expression profiles. This includes cognates of most classical human cell types, including stem and progenitor cells, and differentiating cells along the developmental trajectories of spermatogenesis, haematopoiesis and other adult tissues. We also describe dozens of previously unidentified or sparsely characterized cell types. We globally compare expression profiles to define the molecular relationships of cell types across the body, and explore primate cell and gene expression evolution by comparing lemur transcriptomes to those of human, mouse and macaque. This reveals cell-type-specific patterns of primate specialization and many cell types and genes for which the mouse lemur provides a better human model than mouse 1 . The atlas provides a cellular and molecular foundation for studying this model primate and establishes a general approach for characterizing other emerging model organisms.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- A molecular cell atlas of mouse lemur, an emerging model primate
- Date Crossref
- 30/07/2025
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Single-cell and spatial transcriptomicsExtracellular vesicles in diseaseCell Image Analysis Techniques