Short communication: Baroreflex function in embryonic emus (Dromiceius novaehollandiae).
Dane A Crossley1, Brian P Bagatto2, Ed M Dzialowski1
1Developmental Integrative Biology, Department of Biological Sciences, University of North Texas, 1155 Union Circle #305220, Denton, TX 76203-5017, USA.
Summary
The baroreflex, a cardiovascular control mechanism, matures late in emu embryos, unlike alligators. This suggests baroreflex function may not be crucial for avian cardiovascular homeostasis during most embryonic development.
Area of Science:
- Cardiovascular physiology
- Developmental biology
- Comparative physiology
Background:
- The baroreflex is a vital negative feedback loop regulating arterial blood pressure through cardiac and peripheral adjustments.
- Understanding the maturation and function of the baroreflex in developing vertebrates, particularly egg-laying species, is limited.
- Existing knowledge in avian and reptilian embryos shows differences in the timing of baroreflex functionality.
Purpose of the Study:
- To investigate the maturation and functional timing of the baroreflex in embryonic emus (Dromiceius novaehollandiae).
- To compare baroreflex development in emus with that of chickens and alligators.
- To test the hypothesis that emus, possessing early vagal tone, would exhibit an earlier functional baroreflex similar to alligators.
Main Methods:
- Studied baroreflex function in embryonic emus at various developmental stages.
- Monitored cardiovascular parameters to assess reflex responses.
- Compared findings with existing data from chicken and alligator embryos.
Main Results:
- Emu embryos exhibit a functional hypotensive baroreflex at 90% of incubation.
- This timing is similar to the domestic chicken embryo, not the earlier-maturing alligator embryo.
- The findings do not support the initial hypothesis regarding earlier baroreflex maturation in emus.
Conclusions:
- The baroreflex in emu embryos becomes functional late in development (90% incubation).
- This pattern contrasts with the earlier functional baroreflex observed in alligator embryos.
- Baroreflex function may not be essential for cardiovascular homeostasis throughout the majority of avian embryonic development.


