Footprints of human migration in the population structure of wild wine yeast
Pena, J. J.; Scopel, E. F.; Ward, A. K.; Bensasson, D.
Show abstract
Humans have a long history of fermenting food and beverages that led to domestication of the wine yeast, Saccharomyces cerevisiae. Despite their tight companionship with humans, yeast species that are domesticated or pathogenic can also live on trees. Here we used over 300 genomes of S. cerevisiae from oaks and other trees to determine whether tree-associated populations are genetically distinct from domesticated lineages and estimate the timing of forest lineage divergence. We found populations on trees are highly structured within Europe, Japan, and North America. Approximate estimates of when forest lineages diverged out of Asia and into North America and Europe coincide with the end of the last ice age, the spread of agriculture, and the onset of fermentation by humans. It appears that migration from human-associated environments to trees is ongoing. Indeed, patterns of ancestry in the genomes of three recent migrants from the trees of North America to Europe could be explained by the human response to the Great French Wine Blight. Our results suggest that human-assisted migration affects forest populations, albeit rarely. Such migration events may even have shaped the global distribution of S. cerevisiae. Given the potential for lasting impacts due to yeast migration between human and natural environments, it seems important to understand the evolution of human commensals and pathogens in wild niches.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Fine-scale Population Structure of North American Arabidopsis thaliana Reveals Multiple Sources of Introduction from Across Eurasia 94%
- Tempo of degeneration across independently evolved non-recombining regions 94%
- Specialization restricts the evolutionary paths available to yeast sugar transporters 94%
Similar papers in this journal
- Diversifying selection and adaptive introgression of carotenoid-processing genes underlie the evolution of bill color in the long-tailed finch 92%
- Reticulate evolution and rapid development of reproductive barriers upon secondary contact pose challenges for species delineation in a forest fungus 92%
- Genomic analyses of the Linum distyly supergene reveal convergent evolution at the molecular level 92%
Similar papers in this journal
- A modified fluctuation assay reveals a natural mutator phenotype that drives mutation spectrum variation within Saccharomyces cerevisiae 94%
- Obligate sexual reproduction of a homothallic fungus closely related to the Cryptococcus pathogenic species complex 94%
- The wtf meiotic driver gene family has unexpectedly persisted for over 100 million years 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.