Developmental Plasticity of Patterned and Regenerating Oral Organs
- J. Todd Streelman(corresponding author),
- Ryan F. Bloomquist,
- Teresa E. Fowler
- Georgia Institute of Technology
Open access
Abstract
In many aquatic vertebrates, including bony and cartilaginous fishes, teeth and taste buds colocalize on jaw elements. In these animals, taste buds are renewed continuously throughout life, whereas teeth undergo cycled whole-organ replacement by various means. Recently, studies of cichlid fishes have yielded new insights into the development and regeneration of these dental and sensory oral organs. Tooth and taste bud densities covary positively across species with different feeding strategies, controlled by common regions of the genome and integrated molecular signals. Developing teeth and taste buds share a bipotent epithelium during early patterning stages, from which dental and taste fields are specified. Moreover, these organs share a common epithelial ribbon that supports label-retaining cells during later stages of regeneration. During both patterning and regeneration stages, dental organs can be converted to taste bud fate by manipulation of BMP signaling. These observations highlight a surprising long-term plasticity between dental and sensory organ types. Here, we review these findings and discuss the implications of developmental plasticity that spans the continuum of craniofacial organ patterning and regeneration.
Publication Information
Output type
Original language
English (US)Pages from-to (Number of pages)
Pages 321-333 (13 pages)Publication milestones
- Published - 2015
Publication status
Publisher
Academic Press Inc., United StatesPublication series
- Publication series name: Current Topics in Developmental Biology
ISSN (Print): 0070-2153
Volume: 115
ISBN (Print)
9780124081413Publication IDs
- Scopus: 84976338437
- PubMed: 26589931
Host publication title
Craniofacial Development, 2015Host publication editors
- Yang Chai
