Evolutionary adaptation under climate change: <i>Aedes</i> sp. demonstrates potential to adapt to warming

L Lisa I. Couper (Department of Biology, Stanford University) T Tristram O. Dodge (Department of Biology, Stanford University) J James A. Hemker (Department of Biology, Stanford University) B Bernard Y. Kim (Department of Biology, Stanford University) M Moi Exposito-Alonso (Department of Integrative Biology, University of California) R Rachel B. Brem (Department of Plant & Microbial Biology, University of California) E Erin A. Mordecai (Department of Biology) M Mark C. Bitter (Department of Biology, Stanford University)

Abstract

Climate warming is expected to shift the distributions of mosquitoes and mosquito-borne diseases, promoting expansions at cool range edges and contractions at warm range edges. However, whether mosquito populations could maintain their warm edges through evolutionary adaptation remains unknown. Here, we investigate the potential for thermal adaptation in Aedes sierrensis , a congener of the major disease vector species that experiences large thermal gradients in its native range, by assaying tolerance to prolonged and acute heat exposure, and its genetic basis in a diverse, field-derived population. We found pervasive evidence of heritable genetic variation in mosquito heat tolerance, and phenotypic trade-offs in tolerance to prolonged versus acute heat exposure. Further, we found genomic variation associated with prolonged heat tolerance was clustered in several regions of the genome, suggesting the presence of larger structural variants such as chromosomal inversions. A simple evolutionary model based on our data estimates that the maximum rate of evolutionary adaptation in mosquito heat tolerance will exceed the projected rate of climate warming, implying the potential for mosquitoes to track warming via genetic adaptation.

Article Details

Volume / Issue Vol. 122, Issue 2
Published January 14, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (8)

L

Lisa I. Couper

Department of Biology, Stanford University

T

Tristram O. Dodge

Department of Biology, Stanford University

J

James A. Hemker

Department of Biology, Stanford University

B

Bernard Y. Kim

Department of Biology, Stanford University

M

Moi Exposito-Alonso

Department of Integrative Biology, University of California

R

Rachel B. Brem

Department of Plant & Microbial Biology, University of California

E

Erin A. Mordecai

Department of Biology

M

Mark C. Bitter

Department of Biology, Stanford University