Multicellular rosettes organize neuropil formation
Brittin, C. A.; Santella, A.; Barnes, K. M.; Moyle, M. W.; Fan, L.; Christensen, R.; Kolotuev, I.; Mohler, W. A.; Schroff, H.; Colón-Ramos, D.; Bao, Z.
Show abstract
Neuropils are compartments in the nervous system containing dense networks of neurites and synapses which function as information processing centers. Neuropil formation requires structural and functional organization at and across different scales, achieving single-axon precision for circuits that carry out the core functions while simultaneously accommodating variability among individuals [1; 2; 3; 4]. How these organizational features emerge over development is poorly understood. The nerve ring is the primary neuropil in C. elegans, and its structure is thoroughly mapped [5; 6]. We show that prior to axon outgrowth, nerve ring neurons form a ring of multicellular rosettes with surrounding cells to organize the stratified nerve ring structure [7; 8]. Axon bundles which correspond to future nerve ring strata grow from rosette centers, travel along the ring on "bridge" cells that are simultaneously engaged in adjacent rosettes, and assemble into a topographic scaffold of the nerve ring. SAX-3/Robo is required for proper rosette formation and outgrowth from the center. Furthermore, axon contact sites that form early in development are more conserved than the later ones, indicating a temporal component in neuropil structural variability. Our results reveal an unexpected and critical role of collective cell behaviors prior to innervation to pattern a complex neuropil and orchestrate its formation across scales.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Large vesicle extrusions from C. elegans neurons are consumed and stimulated by glial-like phagocytosis activity of the neighboring cell 96%
- scMultiome analysis identifies embryonic hindbrain progenitors with mixed rhombomere identities 95%
- Analyses of cephalic and non-cephalic sensory cell types provide insight into joint photo- and mechanoreceptor evolution 95%
Similar papers in this journal
- Krüppel-like factor 4 is required for development and regeneration of germline and yolk cells from somatic stem cells in planarians 96%
- Monosynaptic trans-collicular pathways link mouse whisker circuits to integrate somatosensory and motor cortical signals 95%
- The Luminal Ring Protein C2CD3 Acts as a Radial In-to-Out Organizer of the Distal Centriole and Appendages 94%
Similar papers in this journal
Similar papers in this journal
- Distinct spatiotemporal contribution of morphogenetic events and mechanical tissue coupling during Xenopus neural tube closure 96%
- Opposing roles for lipocalins and a CD36 family scavenger receptor in apical extracellular matrix-dependent protection of narrow tube integrity 94%
- Chd4 remodels chromatin to control retinal cell type specification and lineage termination 94%
"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.