Selection Limits to Adaptive Walks on Correlated Landscapes

Ограничения отбора для адаптивных блужданий на коррелированных ландшафтах
Jorge Pérez Heredia, Barbora Trubenová, Dirk Sudholt, Tiago Paixão
2016-11-24

adaptive walksadditive landscapescorrelated fitness landscapesepistatic landscapesweak-mutation regime
Adaptation depends critically on the effects of new mutations and their dependency on the genetic background in which they occur. These two factors can be summarized by the fitness landscape. However, it would require testing all mutations in all backgrounds, making the definition and analysis of fitness landscapes mostly inaccessible. Instead of postulating a particular fitness landscape, we address this problem by considering general classes of landscapes and calculating an upper limit for the time it takes for a population to reach a fitness peak, circumventing the need to have full knowledge about the fitness landscape. We analyze populations in the weak-mutation regime and characterize the conditions that enable them to quickly reach the fitness peak as a function of the number of sites under selection. We show that for additive landscapes there is a critical selection strength enabling populations to reach high-fitness genotypes, regardless of the distribution of effects. This threshold scales with the number of sites under selection, effectively setting a limit to adaptation, and results from the inevitable increase in deleterious mutational pressure as the population adapts in a space of discrete genotypes. Furthermore, we show that for the class of all unimodal landscapes this condition is sufficient but not necessary for rapid adaptation, as in some highly epistatic landscapes the critical strength does not depend on the number of sites under selection; effectively removing this barrier to adaptation.
1
Across all unimodal landscapes, the additive-landscape condition is sufficient but not necessary; strong epistasis can make the critical selection strength independent of the number of selected sites.
2
Additive landscapes exhibit a critical selection strength for reaching high-fitness genotypes, regardless of the distribution of mutational effects.
3
For additive landscapes, the critical selection threshold scales with the number of selected sites, limiting adaptation because deleterious mutational pressure inevitably increases during adaptation.
4
In the weak-mutation regime, rapid adaptation depends on selection strength and the number of sites under selection.
5
The study derives upper bounds on the time required to reach fitness peaks without specifying a complete fitness landscape.

Populations adapting on correlated fitness landscapes in the weak-mutation regime

Limits and conditions for rapid adaptive-walk attainment of fitness peaks, including the scaling of critical selection strength with the number of selected sites and the effects of epistasis

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2016-11-24
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Jorge Pérez Heredia
Barbora Trubenová
Dirk Sudholt
Tiago Paixão
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