PUBLICATION
Spatial organization of olfactory receptor gene choice in the complete V1R-related ORA family of zebrafish
- Authors
- Kowatschew, D., Bozorg Nia, S., Hassan, S., Ustinova, J., Weth, F., Korsching, S.I.
- ID
- ZDB-PUB-220902-1
- Date
- 2022
- Source
- Scientific Reports 12: 14816 (Journal)
- Registered Authors
- Korsching, Sigrun, Weth, Franco
- Keywords
- none
- MeSH Terms
-
- Animals
- Olfactory Mucosa/metabolism
- Olfactory Receptor Neurons*/metabolism
- Receptors, Odorant*/genetics
- Receptors, Odorant*/metabolism
- Selection, Genetic
- Zebrafish/genetics
- Zebrafish/metabolism
- Zebrafish Proteins/genetics
- Zebrafish Proteins/metabolism
- PubMed
- 36045218 Full text @ Sci. Rep.
Citation
Kowatschew, D., Bozorg Nia, S., Hassan, S., Ustinova, J., Weth, F., Korsching, S.I. (2022) Spatial organization of olfactory receptor gene choice in the complete V1R-related ORA family of zebrafish. Scientific Reports. 12:14816.
Abstract
The vertebrate sense of smell employs four main receptor families for detection of odors, among them the V1R/ORA family, which is unusually small and highly conserved in teleost fish. Zebrafish possess just seven ORA receptors, enabling a comprehensive analysis of the expression patterns of the entire family. The olfactory organ of zebrafish is representative for teleosts, cup-shaped, with lamella covered with sensory epithelium protruding into the cup from a median raphe. We have performed quantitative in situ hybridization on complete series of horizontal cryostat sections of adult zebrafish olfactory organ, and have analysed the location of ora-expressing cells in three dimensions, radial diameter, laminar height, and height-within-the-organ. We report broadly overlapping, but distinctly different distributions for all ora genes, even for ora3a and ora3b, the most recent gene duplication. Preferred positions in different dimensions are independent of each other. This spatial logic is very similar to previous reports for the much larger families of odorant receptor (or) and V2R-related olfC genes in zebrafish. Preferred positions for ora genes tend to be more central and more apical than those we observed for these other two families, consistent with expression in non-canonical sensory neuron types.
Genes / Markers
Expression
Phenotype
Mutations / Transgenics
Human Disease / Model
Sequence Targeting Reagents
Fish
Orthology
Engineered Foreign Genes
Mapping