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Environment-independent distribution of mutational effects emerges from microscopic epistasis.


ABSTRACT: Predicting how new mutations alter phenotypes is difficult because mutational effects vary across genotypes and environments. Recently discovered global epistasis, where the fitness effects of mutations scale with the fitness of the background genotype, can improve predictions, but how the environment modulates this scaling is unknown. We measured the fitness effects of ~100 insertion mutations in 42 strains of Saccharomyces cerevisiae in six laboratory environments and found that the global-epistasis scaling is nearly invariant across environments. Instead, the environment tunes one global parameter, the background fitness at which most mutations switch sign. As a consequence, the distribution of mutational effects is remarkably predictable across genotypes and environments. Our results suggest that the effective dimensionality of genotype-to-phenotype maps across environments is surprisingly low.

SUBMITTER: Ardell S 

PROVIDER: S-EPMC10680819 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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Environment-independent distribution of mutational effects emerges from microscopic epistasis.

Ardell Sarah S   Martsul Alena A   Johnson Milo S MS   Kryazhimskiy Sergey S  

bioRxiv : the preprint server for biology 20240709


Predicting how new mutations alter phenotypes is difficult because mutational effects vary across genotypes and environments. Recently discovered global epistasis, where the fitness effects of mutations scale with the fitness of the background genotype, can improve predictions, but how the environment modulates this scaling is unknown. We measured the fitness effects of ~100 insertion mutations in 42 strains of <i>Saccharomyces cerevisiae</i> in six laboratory environments and found that the glo  ...[more]

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