Population genomic structure of sorghum landraces across landscape, environment and culture
Vasquez Cerda, E. E.; Bellis, E. S.; Das, A.; Slayton, E. R.; Morris, G. P.; Lasky, J. R.
Show abstract
The spread of staple crops to diverse environments over time and their current genetic structure may reflect historical dispersal by humans, sustained human preference for particular traits, and adaptation to local environments. Sorghum is a drought-tolerant crop native to Africa cultivated by hundreds of millions of smallholders globally. Here we examined the ecological context of population-genomic structure of 1,806 sorghum landraces across Africa and Eurasia to infer the relative contribution of environmental and cultural factors to sorghum genetic diversity across different relative time periods. Sorghum landraces were spatially and linguistically structured at a large-scale and within subregions, following a pattern of isolation by distance. Within regions, much of genomic structure was best explained by a mechanistic model of human travel time. In our assessment of hierarchical linguistic structure, we found that language families explain 4% of genomic variation while individual languages explain 13% of genomic variation, suggesting the importance of human culture and relationships in gene flow and selection. Variance partitioning showed that travel time, language, and climate explain up to 27% of genomic variation among landraces. We also observed regional differences in the degree of genetic relatedness across space and time in our assessment of shared ancestry. East Africa showed particularly strong geographic turnover in genomic composition and haplotype sharing, while West Africa showed substantial haplotype sharing even over large distances, signifying some rapidly spreading lineages. Thus, space, travel time, and culture likely capture important forces controlling sorghum genomic variation, but these factors operate heterogeneously over space.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- IsoSeq transcriptome assembly of C3 panicoid grasses provides tools to study evolutionary change in the Panicoideae 91%
- Genetic and Genomic Resources to Study Natural Variation in Brassica rapa 91%
- Transcriptomics of developing wild sunflower seeds from the extreme ends of a latitudinal gradient differing in seed oil composition 91%
Similar papers in this journal
- The pattern of genetic variability in a core collection of 2,021 cowpea accessions 94%
- Insights into the domestication of avocado and potential genetic contributors to heterodichogamy 94%
- A haplotype-complete chromosome-level assembly of octoploid Urochloa humidicola cv. Tully reveals multiple genomic compositions and evolutionary histories in the species 92%
Similar papers in this journal
Similar papers in this journal
- A Genomics Resource for Genetics, Physiology, and Breeding of West African Sorghum 95%
- Genomic and phenotypic characterization of finger millet indicates a complex diversification history 95%
- Quantitative and population genomics suggest a broad role of staygreen loci in the drought adaptation of sorghum 94%
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.