Genomic signatures of local adaptation in recent invasive Aedes aegypti populations in California.
Soudi, S.; Crepeau, M.; Collier, T. C.; Lee, Y.; Cornel, A. J.; Lanzaro, G. C.
Show abstract
BackgroundRapid adaptation to new environments can facilitate species invasions and range expansions. Understanding the mechanisms of adaptation used by invasive disease vectors in new regions has key implications for mitigating the prevalence and spread of vector-borne disease, although they remain relatively unexplored. ResultsHere, we use whole-genome sequencing data from 103 Aedes aegypti mosquitoes collected from various sites in southern and central California to infer the genetic structure of invasive populations. We integrate genome data with 25 topo-climate variables to investigate genome-wide signals of local adaptation among populations. Patterns of population structure, as inferred using principle components and admixture analysis, were consistent with three genetic clusters, likely resulting from multiple independent introductions. Using various landscape genomics approaches, which all remove the confounding effects of shared ancestry on correlations between genetic and environmental variation, we identified 112 genes showing strong signals of local environmental adaptation associated with one or more topo-climate factors. Some of them have known effects in climate adaptation, such as heat-shock proteins, which shows selective sweep and recent positive selection acting on these genomic regions. ConclusionsOur results provide a genome wide perspective on the distribution of adaptive loci and lay the foundation for future work to understand how environmental adaptation in Ae. aegypti impacts the arboviral disease landscape and how such adaptation could help or hinder efforts at population control.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genomic profiling of climate adaptation in Aedes aegypti along an altitudinal gradient in Nepal indicates non-gradual expansion of the disease vector 95%
- The strength and form of natural selection on transcript abundance in the wild 94%
- Evolution of hybrid inviability associated with chromosome fusions 94%
Similar papers in this journal
- Integrated environmental and genomic analysis reveals the drivers of local adaptation in African indigenous chickens 95%
- Genetic differentiation is constrained to chromosomal inversions and putative centromeres in locally adapted populations with higher gene flow 94%
- Chromosome fusion affects genetic diversity and evolutionary turnover of functional loci, but consistently depends on chromosome size 94%
Similar papers in this journal
- Assessing connectivity despite high diversity in island populations of the malaria mosquito Anopheles gambiae 92%
- Incipient resistance to an effective pesticide results from genetic adaptation and the canalization of gene expression 92%
- Invasive freshwater snails form novel microbial relationships 91%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.