Scale-dependent signatures of local adaptation in a widespread foundation tree species
收藏DataONE2021-03-19 更新2025-05-31 收录
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Understanding local adaptation is critical for conservation management under rapidly changing environmental conditions. Local adaptation inferred from genotype-environment associations may show different genomic patterns depending on the spatial scale of sampling, due to differences in the slope of environmental gradients and the level of gene flow. We compared signatures of local adaptation across the genome of mountain ash (Eucalyptus regnans) at two spatial scales: a species-wide dataset and a topographically-complex sub-regional dataset. We genotyped 367 individual trees at over 3700 single-nucleotide polymorphisms (SNPs), quantified patterns of spatial genetic structure among populations, and used two analytical methods to identify loci associated with at least one of three environmental variables at each spatial scale. Together, the analyses identified 549 potentially adaptive SNPs at the sub-region scale, and 435 SNPs at the range-wide scale. Thirty-nine genic or near-genic SNPs,...
创建时间:
2025-05-18



