Estimating scale-specific and localized spatial patterns in allele frequency

Characterizing spatial patterns in allele frequencies is fundamental to evolutionary biology because these patterns contain evidence of underlying processes. However, the spatial scales at which gene flow, changing selection, and drift act are often unknown. Many of these processes can operate inconsistently across space, causing nonstationary patterns. We present a wavelet approach to characterize spatial pattern in allele frequency that helps solve these problems. We show how our approach can characterize spatial patterns in relatedness at multiple spatial scales, i.e. a multilocus wavelet genetic dissimilarity. We also develop wavelet tests of spatial differentiation in allele frequency and quantitative trait loci (QTL). With simulation, we illustrate these methods under different scenarios. We also apply our approach to natural populations of Arabidopsis thaliana to characterize population structure and identify locally adapted loci across scales. We find, for example, that Arabidopsis flowering time QTL show significantly elevated genetic differentiation at 300-1,300 km scales. Wavelet transforms of allele frequencies offer a flexible way to reveal geographic patterns and underlying evolutionary processes.

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Work Title Estimating scale-specific and localized spatial patterns in allele frequency
Access
Open Access
Creators
  1. Jesse R. Lasky
  2. Margarita Takou
  3. Diana Gamba
  4. Timothy H. Keitt
Keyword
  1. landscape genetics
  2. local adaption
  3. isolation by distance
  4. Fst
License In Copyright (Rights Reserved)
Work Type Article
Publisher
  1. Genetics
Publication Date July 2024
Publisher Identifier (DOI)
  1. https://doi.org/10.1093/genetics/iyae082
Deposited August 26, 2024

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Version 1
published

  • Created
  • Added iyae082.pdf
  • Added Creator Jesse R. Lasky
  • Added Creator Margarita Takou
  • Added Creator Diana Gamba
  • Added Creator Timothy H. Keitt
  • Published
  • Updated
  • Updated Keyword, Publication Date Show Changes
    Keyword
    • landscape genetics, local adaption, isolation by distance
    Publication Date
    • 2024-07-01
    • 2024-07
  • Updated Keyword Show Changes
    Keyword
    • landscape genetics, local adaption, isolation by distance
    • landscape genetics, local adaption, isolation by distance, Fst