Understanding population history of range expansion and environmental adaptation by visualizing gene-environment-trait associations
Nakamichi, R.; Kitada, S.; Kishino, H.
Show abstract
During the history of range expansion, the populations encounter with variety of environments. They respond to the local environments by modifying the mutually interacting traits. Therefore, to understand the whole life history of the populations, it is ideal to capture the history of their range expansion with reference to the series of surrounding environments and to infer the coadaptation of the multiple traits. Toward this end, we provide an exploratory analysis based on the features of populations: site frequency spectra of populations, population-specific FST, association between genes and environments, positive selections on traits mapped on the admixture graph, and GWAS results. Correspondence analysis of genes, environments, and traits provides a birds-eye view of the history of population differentiation and range expansion and various types of environmental selections at the times. Principal component analysis of the estimated trait-specific polygenic adaptations mapped on the admixture graph enables to understand the coadaptation of multiple traits. The potential usefulness was confirmed by analyzing a public dataset of wild poplar in northwestern America. In response to the northern cold temperature and longer daylength, the populations increased the photosynthetic activity and nutrient use efficiency at the expense of the risk of pathogen invasion, and in response to warm temperature, they increased the growth. At higher altitude, they shifted the maximum activity to earlier period in spring to reduce the activity in dry summer. The R codes for our representation method and simulations of population colonization used in this study are available as supplementary script.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genomic signatures of climate-driven (mal)adaptation in an iconic conifer, the English yew (Taxus baccata L.) 95%
- Divergent selection predating the Last Glacial Maximum mainly acted on macro-phenotypes in Norway spruce 95%
- Genomic and common garden approaches yield complementary results for quantifying environmental drivers of local adaptation in rubber rabbitbrush, a foundational Great Basin shrub 95%
Similar papers in this journal
- Elucidating continental-wide phylogeographic and adaptive processes shaping the genome-wide diversity of North America's most widely distributed tree 96%
- Regional differences in the abiotic environment contribute to genomic divergence within a wild tomato species 96%
- Quantifying adaptive evolution and the effects of natural selection across the Norway spruce genome 96%
Similar papers in this journal
- Physical geography, isolation by distance and environmental variables shape genomic variation of wild barley (Hordeum vulgare L. ssp. spontaneum in the Southern Levant 96%
- Neighbor GWAS: incorporating neighbor genotypic identity into genome-wide association studies of field herbivory 95%
- Joint analysis of microsatellites and flanking sequences enlightens complex demographic history of interspecific gene flow and vicariance in rear-edge oak populations. 93%
Similar papers in this journal
- A whole-genome scan for association with invasion success in the fruit fly Drosophila suzukii using contrasts of allele frequencies corrected for population structure 95%
- High homozygosity of inversions in sunflower species largely averts accumulation of deleterious mutations 95%
- Allele-specific expression reveals multiple paths to highland adaptation in maize 94%
"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.