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Rapid, nonparallel genomicevolution of Brassica rapa (field mustard) under experimental drought

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NIAID Data Ecosystem2026-03-14 收录
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https://www.ncbi.nlm.nih.gov/sra/SRP399573
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While we know that climate change can potentially cause rapid phenotypic evolution, our understanding of the genetic basis and degree of genetic parallelism of rapid evolutionary responses to climate change is limited. In this study, we combined the resurrection approach with an evolve and resequence design to examine genome-wide evolutionary changes following drought. We exposed genetically similar replicate populations of the annual plant Brassica rapa derived from a field population in southern California to four generations of experimental drought or watered conditions in a greenhouse. We assess evolutionary changes to drought and compare changes in SNP frequencies among replicates and to shifts observed in the founder population under natural drought to assess adaptation to drought and parallel evolution.
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2023-01-01
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