Published February 9, 2016 | Version v1

Data from: Reptile embryos lack the opportunity to thermoregulate by moving within the egg

Description

Thermal taxis by egg-bound embryos has been observed in multiple reptiles and might allow embryos to behaviorally thermoregulate. Because temperature affects development, such thermoregulation could allow embryos to control their fate far more than historically assumed. We assessed the opportunity for embryos to behaviorally thermoregulate in nature by examining thermal gradients within natural nests and eggs of the common snapping turtle (Chelydra serpentina, a species that displays embryonic thermal taxis) and, more generally, by simulating thermal gradients within nests across a range of nest depths, egg sizes, and soil types. We observed little spatial thermal variation within C. serpentina nests, and thermal gradients were poorly transferred to eggs. Furthermore, thermal gradients sufficiently large and constant for behavioral thermoregulation were not predicted to occur in our simulations. Gradients of biologically-relevant magnitude have limited global occurrence, and reverse direction twice daily when they do exist, which is substantially faster than embryos can shift position within the egg. Our results imply that reptile embryos will rarely, if ever, have the opportunity to behaviorally thermoregulate by moving within the egg. We suggest that embryonic thermal taxis instead represents a play behavior, which may be adaptive or selectively neutral, and results from the mechanisms for behavioral thermoregulation in free-living stages "coming online" prior to hatching.

Notes

Files

ExternalTemps.csv

Files (240.6 MB)

Name Size Download all
md5:8b6b96d3daaf8136cfcc96b6b4b2fe2f
1.1 kB Preview Download
md5:95ef04b780178930241f373dee4e4b27
664 Bytes Preview Download
md5:ff92ec55fd406d664e60acac108c077b
621.4 kB Preview Download
md5:624566f78993cae54bcaadb146d055b1
2.9 kB Preview Download
md5:624566f78993cae54bcaadb146d055b1
2.9 kB Preview Download
md5:624566f78993cae54bcaadb146d055b1
2.9 kB Preview Download
md5:624566f78993cae54bcaadb146d055b1
2.9 kB Preview Download
md5:abf8035eeba101e74cbb5d40354bf71e
240.0 MB Preview Download

Additional details

Related works

Is cited by
10.1086/686628 (DOI)