A generalist-specialist trade-off between switchgrass cytotypes impacts climate adaptation and geographic range.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 35377798.
- Also identified by DOI 10.1073/pnas.2118879119 and PMC identifier 9169841.
- Licence recorded as CC BY-NC-ND.
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Abstract
Polyploidy results from whole-genome duplication and is a unique form of heritable variation with pronounced evolutionary implications. Different ploidy levels, or cytotypes, can exist within a single species, and such systems provide an opportunity to assess how ploidy variation alters phenotypic novelty, adaptability, and fitness, which can, in turn, drive the development of unique ecological niches that promote the coexistence of multiple cytotypes. Switchgrass, Panicum virgatum, is a widespread, perennial C4 grass in North America with multiple naturally occurring cytotypes, primarily tetraploids (4×) and octoploids (8×). Using a combination of genomic, quantitative genetic, landscape, and niche modeling approaches, we detect divergent levels of genetic admixture, evidence of niche differentiation, and differential environmental sensitivity between switchgrass cytotypes. Taken together, these findings support a generalist (8×)–specialist (4×) trade-off. Our results indicate that the 8× represent a unique combination of genetic variation that has allowed the expansion of switchgrass’ ecological niche and thus putatively represents a valuable breeding resource.
Medical subject headings
- Acclimatization
- Panicum
- Polyploidy