AI Article Synopsis

  • Vertebrates possess various epithelial appendages like scales, feathers, and hair, whose development may be explained by Turing's reaction-diffusion system.
  • The study focuses on shark denticles, showing that a similar Turing-like mechanism influences their patterning, which is vital for hydrodynamics and protection.
  • Findings suggest that this ancient system underlies the patterning in a range of vertebrate appendages, implying a deep evolutionary connection across species, with minor genetic changes leading to diverse patterns.

Article Abstract

Vertebrates have a vast array of epithelial appendages, including scales, feathers, and hair. The developmental patterning of these diverse structures can be theoretically explained by Alan Turing's reaction-diffusion system. However, the role of this system in epithelial appendage patterning of early diverging lineages (compared to tetrapods), such as the cartilaginous fishes, is poorly understood. We investigate patterning of the unique tooth-like skin denticles of sharks, which closely relates to their hydrodynamic and protective functions. We demonstrate through simulation models that a Turing-like mechanism can explain shark denticle patterning and verify this system using gene expression analysis and gene pathway inhibition experiments. This mechanism bears remarkable similarity to avian feather patterning, suggesting deep homology of the system. We propose that a diverse range of vertebrate appendages, from shark denticles to avian feathers and mammalian hair, use this ancient and conserved system, with slight genetic modulation accounting for broad variations in patterning.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6221541PMC
http://dx.doi.org/10.1126/sciadv.aau5484DOI Listing

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