Idiosyncratic epistasis leads to global fitness–correlated trends
Идиосинкразический эпистаз приводит к глобальным тенденциям, коррелирующим с приспособленностью
2022-05-05
SCID: 54.1/8rdvcpam
Discuss with AI
CRISPR gene drivebudding yeastfitness landscapesidiosyncratic epistasismissense mutations
Figures from the paper
Abstract (AI)
Epistasis can markedly affect evolutionary trajectories. In recent decades, protein-level fitness landscapes have revealed extensive idiosyncratic epistasis among specific mutations. By contrast, other work has found ubiquitous and apparently nonspecific patterns of global diminishing-returns and increasing-costs epistasis among mutations across the genome. Here, we used a hierarchical CRISPR gene drive system to construct all combinations of 10 missense mutations from across the genome in budding yeast and measured their fitness in six environments. We show that the resulting fitness landscapes exhibit global fitness-correlated trends but that these trends emerge from specific idiosyncratic interactions. We thus provide experimental validation of recent theoretical work arguing that fitness-correlated trends can emerge as the generic consequence of idiosyncratic epistasis.
Key Findings
1
A hierarchical CRISPR gene drive system generated all combinations of 10 genome-wide missense mutations in budding yeast.
2
Fitness landscapes measured across six environments displayed global diminishing-returns and increasing-costs trends correlated with overall fitness.
3
The observed global trends arose from specific, idiosyncratic epistatic interactions rather than nonspecific interactions among mutations.
4
The results experimentally validate theory proposing that fitness-correlated trends can generically emerge from idiosyncratic epistasis.
Research Object
Combinatorial genotypes of budding yeast carrying all combinations of 10 genome-wide missense mutations, evaluated across six environments
Research Subject
The emergence of global fitness-correlated trends from specific idiosyncratic epistatic interactions
Publication Details
Publication Date
2022-05-05
Journal
Publisher
ISSN
Cited by
92
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest