Global epistasis emerges from a generic model of a complex trait

Глобальный эпистаз возникает из общей модели сложного признака
Gautam Reddy, Michael M. Desai
2020-06-14

distribution of fitness effectsfitness landscape modelglobal epistasismicroscopic epistasisphenotypic evolution
Abstract Epistasis between mutations can make adaptation contingent on evolutionary history. Yet despite widespread “microscopic” epistasis between the mutations involved, microbial evolution experiments show consistent patterns of fitness increase between replicate lines. Recent work shows that this consistency is driven in part by global patterns of diminishing-returns and increasing-costs epistasis, which make mutations systematically less beneficial (or more deleterious) on fitter genetic backgrounds. However, the mechanistic basis of this “global” epistasis remains unknown. Here we show that diminishing-returns and increasing-costs epistasis emerge generically as a consequence of pervasive microscopic epistasis. Our model predicts a specific quantitative relationship between the magnitude of global epistasis and the stochastic effects of microscopic epistasis, which we confirm by re-analyzing existing data. We further show that the distribution of fitness effects takes on a universal form when epistasis is widespread, and introduce a novel fitness landscape model to show how phenotypic evolution can be repeatable despite sequence-level stochasticity.
1
A novel fitness-landscape model explains how phenotypic evolution can remain repeatable despite stochasticity at the sequence level.
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Diminishing-returns and increasing-costs global epistasis emerge generically from widespread microscopic epistasis.
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The framework provides a mechanistic basis for consistent fitness increases across replicate microbial evolution lines despite pervasive mutation-level epistasis.
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The model predicts a specific quantitative relationship between global epistasis magnitude and stochastic effects of microscopic epistasis, confirmed through re-analysis of existing data.
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When epistasis is widespread, the distribution of fitness effects assumes a universal form.

Global epistasis in microbial adaptation and fitness landscapes shaped by widespread microscopic epistasis

The emergence, quantitative relationship, and evolutionary consequences of diminishing-returns and increasing-costs global epistasis, including its effects on fitness-effect distributions and repeatability of phenotypic evolution

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2020-06-14
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Gautam Reddy
Michael M. Desai
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