Extensive standing genetic variation from a small number of founders enables rapid adaptation in Daphnia

We lack a thorough understanding of the origin and maintenance of standing genetic variation that enables rapid evolutionary responses of natural populations. Whole genome sequencing of a resurrected Daphnia population shows that standing genetic variation in over 500 genes follows an evolutionary t...

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Veröffentlicht in:Nature communications 2021-07, Vol.12 (1), p.4306-4306, Article 4306
Hauptverfasser: Chaturvedi, Anurag, Zhou, Jiarui, Raeymaekers, Joost A. M., Czypionka, Till, Orsini, Luisa, Jackson, Craig E., Spanier, Katina I., Shaw, Joseph R., Colbourne, John K., De Meester, Luc
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Sprache:eng
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Zusammenfassung:We lack a thorough understanding of the origin and maintenance of standing genetic variation that enables rapid evolutionary responses of natural populations. Whole genome sequencing of a resurrected Daphnia population shows that standing genetic variation in over 500 genes follows an evolutionary trajectory that parallels the pronounced and rapid adaptive evolution of multiple traits in response to predator-driven natural selection and its subsequent relaxation. Genetic variation carried by only five founding individuals from the regional genotype pool is shown to suffice at enabling the observed evolution. Our results provide insight on how natural populations can acquire the genomic variation, through colonization by a few regional genotypes, that fuels rapid evolution in response to strong selection pressures. While these evolutionary responses in our study population involved hundreds of genes, we observed no evidence of genetic erosion. Standing genetic variation allows natural populations to evolve rapidly. Genome sequences of a resurrected Daphnia population show that genetic variation carried by only five founding individuals from the regional genotype pool is enough to fuel rapid evolution in response to strong selection pressures with no evidence of genetic erosion.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-021-24581-z