High-order epistasis shapes evolutionary trajectories

Эпистаз высокого порядка формирует эволюционные траектории
Zachary R. Sailer, Michael J. Harms
2017-05-15

evolutionary trajectoriesfitness landscapegenotype-fitness mapshigh-order epistasismutation interactions
High-order epistasis-where the effect of a mutation is determined by interactions with two or more other mutations-makes small, but detectable, contributions to genotype-fitness maps. While epistasis between pairs of mutations is known to be an important determinant of evolutionary trajectories, the evolutionary consequences of high-order epistasis remain poorly understood. To determine the effect of high-order epistasis on evolutionary trajectories, we computationally removed high-order epistasis from experimental genotype-fitness maps containing all binary combinations of five mutations. We then compared trajectories through maps both with and without high-order epistasis. We found that high-order epistasis strongly shapes the accessibility and probability of evolutionary trajectories. A closer analysis revealed that the magnitude of epistasis, not its order, predicts is effects on evolutionary trajectories. We further find that high-order epistasis makes it impossible to predict evolutionary trajectories from the individual and paired effects of mutations. We therefore conclude that high-order epistasis profoundly shapes evolutionary trajectories through genotype-fitness maps.
1
Computationally removing high-order epistasis showed that it strongly alters both the accessibility and probability of evolutionary trajectories.
2
Despite being less studied than pairwise epistasis, high-order epistasis profoundly shapes evolution through genotype–fitness maps.
3
High-order epistasis makes small but detectable contributions to genotype–fitness maps containing combinations of five mutations.
4
High-order epistasis prevents reliable prediction of evolutionary trajectories using only individual and pairwise mutation effects.
5
The magnitude of epistasis, rather than its interaction order, predicts its effects on evolutionary trajectories.

experimental genotype-fitness maps containing all binary combinations of five mutations

the effects of high-order epistasis on the accessibility, probability, and predictability of evolutionary trajectories through genotype-fitness maps

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2017-05-15
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Zachary R. Sailer
Michael J. Harms
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