Cell lineage specification during development of the anterior lateral plate mesoderm and forelimb field
Newton, A. H.; Williams, S. M.; Major, A. T.; Smith, C. A.
Show abstract
The lateral plate mesoderm (LPM) is a transient embryonic tissue that gives rise to a diverse range of mature cell types, including the cardiovascular system, the urogenital system, endoskeleton of the limbs, and mesenchyme of the gut. While the genetic processes that drive development of these tissues are well defined, the early cell fate choices underlying LPM development and specification are poorly understood. In this study, we utilize single-cell transcriptomics to define cell lineage specification during development of the anterior LPM and the forelimb field in the chicken embryo. We identify the molecular pathways directing differentiation of the aLPM towards a somatic or splanchnic cell fate, and subsequent emergence of the forelimb mesenchyme. We establish the first transcriptional atlas of progenitor, transitional and mature cell types throughout the early forelimb field and uncover the global signalling pathways which are active during LPM differentiation and forelimb initiation. Specification of the somatic and splanchnic LPM from undifferentiated mesoderm utilizes distinct signalling pathways and involves shared repression of early mesodermal markers, followed by activation of lineage-specific gene modules. We identify rapid activation of the transcription factor TWIST1 in the somatic LPM preceding activation of known limb initiation genes, such as TBX5, which plays a likely role in epithelial-to-mesenchyme transition of the limb bud mesenchyme. Furthermore, development of the somatic LPM and limb is dependent on ectodermal BMP signalling, where BMP antagonism reduces expression of key somatic LPM and limb genes to inhibit formation of the limb bud mesenchyme. Together, these findings provide new insights into molecular mechanisms that drive fate cell choices during specification of the aLPM and forelimb initiation.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Identification of bipotent progenitors that give rise to myogenic and connective tissues in mouse 97%
- Tgfbr1 regulates lateral plate mesoderm and endoderm reorganization during the trunk to tail transition 97%
- Completion of neural crest cell production and emigration is regulated by retinoic acid-dependent inhibition of BMP signaling 97%
Similar papers in this journal
- Nodal signaling establishes a competency window for stochastic cell fate switching 96%
- Characterisation of the transcriptional dynamics underpinning the function, fate, and migration of the mouse Anterior Visceral Endoderm 96%
- The mesodermal source of fibronectin is required for heart morphogenesis and cardiac outflow tract elongation by regulating cell shape, polarity, and mechanotransduction in the second heart field 96%
Similar papers in this journal
- Tfap2b specifies an embryonic melanocyte stem cell population that retains adult multi-fate potential 96%
- Sox2 and canonical Wnt signaling interact to activate a developmental checkpoint coordinating morphogenesis with mesodermal fate acquisition 96%
- Fibroblast diversification is an embryonic process dependent on muscle contraction 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.