Related Experiment Video
Updated: Feb 2, 2026

Author Spotlight: Advancing Bone Cell Activity Research with Zebrafish Scales
Published on: January 10, 2025
Comprehensive molecular and cellular studies suggest avian scutate scales are secondarily derived from feathers, and
Ping Wu1, Yung-Chih Lai1,2, Randall Widelitz1
1Department of Pathology, Keck School of Medicine, University Southern California, Los Angeles, CA, 90033, USA.
Abstract:
Amniote skin appendages such as feathers, hairs and scales, provide thermoregulation, physical protection and display different color patterns to attract a mate or frighten an adversary. A long-standing question is whether "reptile scale" and "avian leg scales" are of the same origin. Understanding the relation between avian feathers, avian scales and reptilian scales will enhance our understanding of skin appendage evolution. We compared the molecular and cellular profiles in chicken feather, chicken scales and alligator scales and found that chicken scutate scales are similar to chicken feathers in morphogenesis at the early placode stage. When we compared the expression of the recently identified feather-specific genes and scale-specific genes in these skin appendages, we found that at the molecular level alligator scales are significantly different from both chicken feathers and chicken scales. Furthermore, we identified a similarly diffuse putative stem cell niche in morphologically similar chicken and alligator scales. These putative stem cells participate in alligator scale regeneration. In contrast, avian feathers have a more condensed stem cell niche, which may be responsible for cycling. Thus, our results suggest that chicken and alligator scales formed independently through convergent evolution.
Related Concept Videos
pH Scale
Scaling
Thermometers and Temperature Scales
As many physical properties depend on temperature, the variety of thermometers is...
Gas Thermometers and the Kelvin Scale
Molecular Models
Kinetic Molecular Theory: Molecular Velocities, Temperature, and Kinetic Energy

