Published October 19, 2021 | Version v1
Dataset Open

Survival and malformations, swimming performance and tadpole traits

  • 1. University of Western Australia

Description

Targeted gene flow (TGF) could bolster the adaptive potential of isolated populations threatened by climate change, but could also lead to outbreeding depression. Here, we explore these possibilities by creating mixed- and within-population crosses in a terrestrial-breeding frog species threatened by a drying climate. We reared embryos on wet and dry soils and quantified fitness-related traits upon hatching. TGF produced mixed outcomes in hybrids which depended on crossing direction (origin of gametes from each sex). North-south crosses led to low embryonic survival if eggs were of a southern origin, and high malformation rates when eggs were from a northern population. Conversely, east-west crosses led to one instance of hybrid vigour, evident by increased fitness and desiccation tolerance of hybrid offspring relative to offspring produced from within-population crosses. These contrasting results highlight the need to experimentally evaluate the outcomes of TGF for focal species across generations prior to implementing management actions.

Notes

Funding provided by: ANZ Holsworth Wildlife Research Endowment*
Crossref Funder Registry ID:
Award Number: HOLSW2016-R1-F036

Funding provided by: Australian Government's National Environmental Science Programme*
Crossref Funder Registry ID:
Award Number:

Funding provided by: C.F.H. & E.A. Jenkins Postgraduate Research Scholarship*
Crossref Funder Registry ID:
Award Number:

Files

All_traits_summary_FINAL.csv

Files (197.6 kB)

Name Size Download all
md5:2420309cf55fdd191db63a9196a9c984
4.8 kB Preview Download
md5:e3f5c993899ad506616d74143425dd59
2.3 kB Preview Download
md5:298f778281224d239365fc3d71f97039
26.6 kB Preview Download
md5:8336e0b9a71b2a83efe94fb547cd3dff
69.3 kB Preview Download
md5:643ee3dfed118efe75dbb97a1109592d
94.5 kB Preview Download

Additional details

Related works

Is derived from
10.5281/zenodo.5567905 (DOI)