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Publication : Little skate genome provides insights into genetic programs essential for limb-based locomotion.

First Author  Yoo D Year  2022
Journal  Elife Volume  11
PubMed ID  36288084 Mgi Jnum  J:330827
Mgi Id  MGI:7379898 Doi  10.7554/eLife.78345
Citation  Yoo D, et al. (2022) Little skate genome provides insights into genetic programs essential for limb-based locomotion. Elife 11:e78345
abstractText  The little skate Leucoraja erinacea, a cartilaginous fish, displays pelvic fin driven walking-like behavior using genetic programs and neuronal subtypes similar to those of land vertebrates. However, mechanistic studies on little skate motor circuit development have been limited, due to a lack of high-quality reference genome. Here, we generated an assembly of the little skate genome, with precise gene annotation and structures, which allowed post-genome analysis of spinal motor neurons (MNs) essential for locomotion. Through interspecies comparison of mouse, skate and chicken MN transcriptomes, shared and divergent gene expression profiles were identified. Comparison of accessible chromatin regions between mouse and skate MNs predicted shared transcription factor (TF) motifs with divergent ones, which could be used for achieving differential regulation of MN-expressed genes. A greater number of TF motif predictions were observed in MN-expressed genes in mouse than in little skate. These findings suggest conserved and divergent molecular mechanisms controlling MN development of vertebrates during evolution, which might contribute to intricate gene regulatory networks in the emergence of a more sophisticated motor system in tetrapods.
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