Testing for adaptive changes linked to range expansion following a single introduction of the fall webworm

Author:

Dai Jin‐Xu12,Cao Li‐Jun2ORCID,Chen Jin‐Cui2,Yang Fangyuan2ORCID,Shen Xiu‐Jing2,Ma Li‐Jun2,Hoffmann Ary Anthony3ORCID,Chen Min1,Wei Shu‐Jun2ORCID

Affiliation:

1. Beijing Key Laboratory for Forest Pests Control Beijing Forestry University Beijing China

2. Institute of Plant Protection Beijing Academy of Agriculture and Forestry Sciences Beijing China

3. School of BioSciences, Bio21 Institute University of Melbourne Parkville Victoria Australia

Abstract

AbstractAdaptive evolution following colonization can affect the impact of invasive species. The fall webworm (FWW) invaded China 40 years ago through a single introduction event involving a severe bottleneck and subsequently diverged into two genetic groups. The well‐recorded invasion history of FWW, coupled with a clear pattern of genetic divergence, provides an opportunity to investigate whether there is any sign of adaptive evolution following the invasion. Based on genome‐wide SNPs, we identified genetically separated western and eastern groups of FWW and correlated spatial variation in SNPs with geographical and climatic factors. Geographical factors explained a similar proportion of the genetic variation across all populations compared with climatic factors. However, when the two population groups were analysed separately, environmental factors explained more variation than geographical factors. SNP outliers in populations of the western group had relatively stronger response to precipitation than temperature‐related variables. Functional annotation of SNP outliers identified genes associated with insect cuticle protein potentially related to desiccation adaptation in the western group and genes associated with lipase biosynthesis potentially related to temperature adaptation in the eastern group. Our study suggests that invasive species may maintain the evolutionary potential to adapt to heterogeneous environments despite a single invasion event. The molecular data suggest that quantitative trait comparisons across environments would be worthwhile.

Publisher

Wiley

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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