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  Reconstructing axial progenitor field dynamics in mouse stem cell-derived embryoids

Bolondi, A., Law, B. K., Kretzmer, H., Gassaloglu, S. I., Buschow, R., Riemenschneider, C., et al. (2024). Reconstructing axial progenitor field dynamics in mouse stem cell-derived embryoids. Developmental Cell, 59(12), 1489-1505. doi:10.1016/j.devcel.2024.03.024.

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1-s2.0-S1534580724001928-main.pdf (Publisher version), 18MB
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© 2024 The Authors. Published by Elsevier Inc. All rights reserved.

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 Creators:
Bolondi, Adriano1, Author                 
Law, Benjamin K. , Author
Kretzmer, Helene2, Author                 
Gassaloglu, Seher Ipek3, Author           
Buschow, René4, Author                 
Riemenschneider, Christina1, Author                 
Yang, Dian , Author
Walther, Maria1, Author                 
Veenvliet, Jesse V., Author
Meissner, Alexander1, Author                 
Smith, Zachary D. , Author
Chan, Michelle M. , Author
Affiliations:
1Dept. of Genome Regulation (Head: Alexander Meissner), Max Planck Institute for Molecular Genetics, Max Planck Society, ou_2379694              
2Computational Genomics (Helene Kretzmer), Dept. of Genome Regulation (Head: Alexander Meissner), Max Planck Institute for Molecular Genetics, Max Planck Society, ou_3430949              
3Stem Cell Chromatin (Aydan Bulut-Karslioglu), Dept. of Genome Regulation (Head: Alexander Meissner), Max Planck Institute for Molecular Genetics, Max Planck Society, ou_3014185              
4Microscopy and Cryo Electron Microscopy (Thorsten Mielke), Scientific Service, Max Planck Institute for Molecular Genetics, Max Planck Society, ou_1479668              

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Free keywords: cell plasticity; embryonic development; lineage tracing; molecular recording; morphogenesis; neuro-mesodermal progenitor dynamics; single-cell phylogenies; stem cell embryoids
 Abstract: Embryogenesis requires substantial coordination to translate genetic programs to the collective behavior of differentiating cells, but understanding how cellular decisions control tissue morphology remains conceptually and technically challenging. Here, we combine continuous Cas9-based molecular recording with a mouse embryonic stem cell-based model of the embryonic trunk to build single-cell phylogenies that describe the behavior of transient, multipotent neuro-mesodermal progenitors (NMPs) as they commit into neural and somitic cell types. We find that NMPs show subtle transcriptional signatures related to their recent differentiation and contribute to downstream lineages through a surprisingly broad distribution of individual fate outcomes. Although decision-making can be heavily influenced by environmental cues to induce morphological phenotypes, axial progenitors intrinsically mature over developmental time to favor the neural lineage. Using these data, we present an experimental and analytical framework for exploring the non-homeostatic dynamics of transient progenitor populations as they shape complex tissues during critical developmental windows.

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Language(s): eng - English
 Dates: 2024-04-042024-06-17
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1016/j.devcel.2024.03.024
PMID: 38579718
 Degree: -

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Title: Developmental Cell
Source Genre: Journal
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Publ. Info: Cambridge, Mass. : Cell Press
Pages: - Volume / Issue: 59 (12) Sequence Number: - Start / End Page: 1489 - 1505 Identifier: ISSN: 1534-5807
CoNE: https://pure.mpg.de/cone/journals/resource/111006902714134