Literature DB >> 24514901

The fates of mutant lineages and the distribution of fitness effects of beneficial mutations in laboratory budding yeast populations.

Evgeni M Frenkel1, Benjamin H Good, Michael M Desai.   

Abstract

The outcomes of evolution are determined by which mutations occur and fix. In rapidly adapting microbial populations, this process is particularly hard to predict because lineages with different beneficial mutations often spread simultaneously and interfere with one another's fixation. Hence to predict the fate of any individual variant, we must know the rate at which new mutations create competing lineages of higher fitness. Here, we directly measured the effect of this interference on the fates of specific adaptive variants in laboratory Saccharomyces cerevisiae populations and used these measurements to infer the distribution of fitness effects of new beneficial mutations. To do so, we seeded marked lineages with different fitness advantages into replicate populations and tracked their subsequent frequencies for hundreds of generations. Our results illustrate the transition between strongly advantageous lineages that decisively sweep to fixation and more moderately advantageous lineages that are often outcompeted by new mutations arising during the course of the experiment. We developed an approximate likelihood framework to compare our data to simulations and found that the effects of these competing beneficial mutations were best approximated by an exponential distribution, rather than one with a single effect size. We then used this inferred distribution of fitness effects to predict the rate of adaptation in a set of independent control populations. Finally, we discuss how our experimental design can serve as a screen for rare, large-effect beneficial mutations.

Entities:  

Keywords:  Saccharomyces cerevisiae; beneficial mutations; clonal interference; distribution of fitness effects; experimental evolution

Mesh:

Year:  2014        PMID: 24514901      PMCID: PMC3982683          DOI: 10.1534/genetics.113.160069

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  52 in total

1.  Estimation of the rate and effect of new beneficial mutations in asexual populations.

Authors:  Wei Zhang; Vasudha Sehgal; Duy M Dinh; Ricardo B R Azevedo; Tim F Cooper; Robert Azencott
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2.  Distribution of fixed beneficial mutations and the rate of adaptation in asexual populations.

Authors:  Benjamin H Good; Igor M Rouzine; Daniel J Balick; Oskar Hallatschek; Michael M Desai
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3.  Genetic draft and quasi-neutrality in large facultatively sexual populations.

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Journal:  Genetics       Date:  2011-05-30       Impact factor: 4.562

Review 4.  Experimental genomics of fitness in yeast.

Authors:  Graham Bell
Journal:  Proc Biol Sci       Date:  2010-02-03       Impact factor: 5.349

5.  Cost of adaptation and fitness effects of beneficial mutations in Pseudomonas fluorescens.

Authors:  Thomas Bataillon; Tianyi Zhang; Rees Kassen
Journal:  Genetics       Date:  2011-08-25       Impact factor: 4.562

6.  Hunger artists: yeast adapted to carbon limitation show trade-offs under carbon sufficiency.

Authors:  Jared W Wenger; Jeffrey Piotrowski; Saisubramanian Nagarajan; Kami Chiotti; Gavin Sherlock; Frank Rosenzweig
Journal:  PLoS Genet       Date:  2011-08-04       Impact factor: 5.917

7.  Genetic variation and the fate of beneficial mutations in asexual populations.

Authors:  Gregory I Lang; David Botstein; Michael M Desai
Journal:  Genetics       Date:  2011-05-05       Impact factor: 4.562

8.  Emergent neutrality in adaptive asexual evolution.

Authors:  Stephan Schiffels; Gergely J Szöllosi; Ville Mustonen; Michael Lässig
Journal:  Genetics       Date:  2011-09-16       Impact factor: 4.562

9.  A method to infer positive selection from marker dynamics in an asexual population.

Authors:  Christopher J R Illingworth; Ville Mustonen
Journal:  Bioinformatics       Date:  2012-01-05       Impact factor: 6.937

10.  Escherichia coli rpoB mutants have increased evolvability in proportion to their fitness defects.

Authors:  Jeffrey E Barrick; Mark R Kauth; Christopher C Strelioff; Richard E Lenski
Journal:  Mol Biol Evol       Date:  2010-01-27       Impact factor: 16.240

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  23 in total

1.  Evolution of coexistence in a crowded microplate well.

Authors:  J Arjan G M de Visser
Journal:  Proc Natl Acad Sci U S A       Date:  2015-08-26       Impact factor: 11.205

Review 2.  The spectrum of adaptive mutations in experimental evolution.

Authors:  Gregory I Lang; Michael M Desai
Journal:  Genomics       Date:  2014-09-28       Impact factor: 5.736

3.  The impact of macroscopic epistasis on long-term evolutionary dynamics.

Authors:  Benjamin H Good; Michael M Desai
Journal:  Genetics       Date:  2014-11-12       Impact factor: 4.562

4.  The evolutionarily stable distribution of fitness effects.

Authors:  Daniel P Rice; Benjamin H Good; Michael M Desai
Journal:  Genetics       Date:  2015-03-10       Impact factor: 4.562

Review 5.  Experimental Design, Population Dynamics, and Diversity in Microbial Experimental Evolution.

Authors:  Bram Van den Bergh; Toon Swings; Maarten Fauvart; Jan Michiels
Journal:  Microbiol Mol Biol Rev       Date:  2018-07-25       Impact factor: 11.056

6.  Deleterious passengers in adapting populations.

Authors:  Benjamin H Good; Michael M Desai
Journal:  Genetics       Date:  2014-09-05       Impact factor: 4.562

7.  A Statistical Guide to the Design of Deep Mutational Scanning Experiments.

Authors:  Sebastian Matuszewski; Marcel E Hildebrandt; Ana-Hermina Ghenu; Jeffrey D Jensen; Claudia Bank
Journal:  Genetics       Date:  2016-07-13       Impact factor: 4.562

Review 8.  Genomic investigations of evolutionary dynamics and epistasis in microbial evolution experiments.

Authors:  Elizabeth R Jerison; Michael M Desai
Journal:  Curr Opin Genet Dev       Date:  2015-09-14       Impact factor: 5.578

Review 9.  Experimental Studies of Evolutionary Dynamics in Microbes.

Authors:  Ivana Cvijović; Alex N Nguyen Ba; Michael M Desai
Journal:  Trends Genet       Date:  2018-07-17       Impact factor: 11.639

10.  Molecular Origins of Complex Heritability in Natural Genotype-to-Phenotype Relationships.

Authors:  Christopher M Jakobson; Daniel F Jarosz
Journal:  Cell Syst       Date:  2019-05-01       Impact factor: 10.304

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