Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur… - Proceedings of the …, 2021 - royalsocietypublishing.org
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …

[HTML][HTML] Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur… - Proceedings of the Royal …, 2021 - ncbi.nlm.nih.gov
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …

Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur… - Royal Society of London …, 2021 - lup.lub.lu.se
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …

Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur… - Proceedings of the Royal …, 2021 - diva-portal.org
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …

Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur… - Proceedings …, 2021 - pubmed.ncbi.nlm.nih.gov
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …

Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur, RJ Walters - bioRxiv, 2018 - biorxiv.org
Adaptation in new environments depends on the amount and type of genetic variation
available for evolution, and the efficacy by which natural selection discriminates among this …

Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur… - Royal Society of London …, 2021 - portal.research.lu.se
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …

[PDF][PDF] Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur, RJ Walters - 2021 - researchgate.net
1. Background The strength of natural selection impacts on the rate and repeatability of
evolution [1–5], the maintenance of genetic variation [6, 7] and extinction risk [8, 9]. However …

Elevated temperature increases genome-wide selection on de novo mutations

D Berger, J Stångberg, J Baur… - Proceedings of the …, 2021 - centaur.reading.ac.uk
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …

Elevated temperature increases genome-wide selection on de novo mutations.

D Berger, J Stångberg, J Baur… - Proceedings. Biological …, 2021 - europepmc.org
Adaptation in new environments depends on the amount of genetic variation available for
evolution, and the efficacy by which natural selection discriminates among this variation …