bioRxiv · 10.1101/497610
Rapid evolution of spontaneous mutation increases genetic diversity facilitating plant population survival
Abstract
Using a mechanistic eco-evolutionary trait-based neighborhood-model, we quantify the impact of mutations on spatial interactions to better understand the potential effect of niche evolution through mutations on the population dynamics of Arabidopsis thaliana. We use 100 twenty-fifth generation mutation accumulation (MA) lines (genotypes) derived from one founder genotype to study mutational effects on neighbor responses in a field experiment. We created individual-based maps (15,000 individuals), including phenotypic variation, to quantify mutational effects within genotypes versus between genotypes on reproduction and survival. At small-scale, survival is enhanced but reproduction is decreased when a genotype is surrounded by different genotypes. At large-scale, seed set is facilitated by different genotypes while the same genotype has either no effect or negative effects. Mutations may provide a mechanism for plants to quickly evolve niches and may drive competition, facilitation and selection with profound consequences for future population and community dynamics.
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Nottebrock, H., Weng, M.-L., Rutter, M. T., Fenster, C. B.. 2018-12-17. Rapid evolution of spontaneous mutation increases genetic diversity facilitating plant population survival. https://doi.org/10.1101/497610
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