Abstract
AbstractEmbryonic heart rate is a strong determinant of metabolic rate and the rate of embryonic development in oviparous species. In humans, embryonic heart rate is positively correlated with the heart rate of the mother. However, human embryos do not develop autonomously from the maternal circulatory system, making it impossible to separate maternal control from an independent embryonic adjustment of its heart rate to that of its mother. In birds, embryonic development does occur autonomously from the mother, while the embryo can auditively perceive the heart rate of the incubating parent. In this study, we used Common Terns (Sterna hirundo) to experimentally test whether the embryonic heart rate is affected by parental heart rate during incubation. We artificially incubated freshly laid eggs under standardized conditions and continuously exposed them to the sound of either a slow or fast parental heart rate throughout the first 18 days of embryonic development. At day 18 of embryonic development (a few days before hatching) there was no significant difference in the embryonic heart rate between both treatments. There was also no effect of treatment on either total duration of embryonic development or hatching success. We suggest that embryonic heart rate and development rate may not be affected by the heart rate of the parent because natural parental heart rates are very sensitive to external conditions that may fluctuate drastically, while embryos may need a relatively stable heart rate for optimal development.
Funder
Institut für Vogelforschung - Vogelwarte Helgoland
Publisher
Springer Science and Business Media LLC
Reference27 articles.
1. Arnold JM, Ordonez R, Copeland DA, Nathan R, Scornavacchi JM, Tyerman DJ, Oswald SA (2011) Simple and inexpensive devices to measure heart rates of incubating birds. J Field Ornithol 82:288–296. https://doi.org/10.1111/j.1557-9263.2011.00332.x
2. Audacity Team (2019) Audacity(R): free audio editor and recorder [computer application]. Version 2.3.2. http://web.audacityteam.org/download. Accessed 13 Nov 2019
3. Becker PH, Ludwigs J-D (2004) Sterna hirundo common tern. In: Parkin D (ed) BWP update nos 1/2, vol 6. Oxford University Press, New York, pp 93–139
4. Borneman TE, Rose ET, Simons TR (2014) Minimal changes in heart rate of incubating American oystercatchers (Haematopus palliatus) in response to human activity. Condor 116:493–503. https://www.jstor.org/stable/90008470
5. Butler PJ, Green JA, Boyd IL, Speakman JR (2004) Measuring metabolic rate in the field: the pros and cons of the doubly labelled water and heart rate methods. Funct Ecol 18:168–183. https://doi.org/10.1111/j.0269-8463.2004.00821.x