Forecasting of phenotypic and genetic outcomes of experimental evolution in Pseudomonas protegens

Author:

Pentz Jennifer T.ORCID,Lind Peter A.ORCID

Abstract

Experimental evolution with microbes is often highly repeatable under identical conditions, suggesting the possibility to predict short-term evolution. However, it is not clear to what degree evolutionary forecasts can be extended to related species in non-identical environments, which would allow testing of general predictive models and fundamental biological assumptions. To develop an extended model system for evolutionary forecasting, we used previous data and models of the genotype-to-phenotype map from the wrinkly spreader system in Pseudomonas fluorescens SBW25 to make predictions of evolutionary outcomes on different biological levels for Pseudomonas protegens Pf-5. In addition to sequence divergence (78% amino acid and 81% nucleotide identity) for the genes targeted by mutations, these species also differ in the inability of Pf-5 to make cellulose, which is the main structural basis for the adaptive phenotype in SBW25. The experimental conditions were changed compared to the SBW25 system to test if forecasts were extendable to a non-identical environment. Forty-three mutants with increased ability to colonize the air-liquid interface were isolated, and the majority had reduced motility and was partly dependent on the Pel exopolysaccharide as a structural component. Most (38/43) mutations are expected to disrupt negative regulation of the same three diguanylate cyclases as in SBW25, with a smaller number of mutations in promoter regions, including an uncharacterized polysaccharide synthase operon. A mathematical model developed for SBW25 predicted the order of the three main pathways and the genes targeted by mutations, but differences in fitness between mutants and mutational biases also appear to influence outcomes. Mutated regions in proteins could be predicted in most cases (16/22), but parallelism at the nucleotide level was low and mutational hot spot sites were not conserved. This study demonstrates the potential of short-term evolutionary forecasting in experimental populations and provides testable predictions for evolutionary outcomes in other Pseudomonas species.

Funder

Kempestiftelserna

Carl Tryggers Stiftelse för Vetenskaplig Forskning

Magnus Bergvalls Stiftelse

Publisher

Public Library of Science (PLoS)

Subject

Cancer Research,Genetics (clinical),Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference73 articles.

1. Genome dynamics during experimental evolution;JE Barrick;Nat Rev Genet,2013

2. Elucidating the molecular architecture of adaptation via evolve and resequence experiments;A Long;Nat Rev Genet,2015

3. Genomic investigations of evolutionary dynamics and epistasis in microbial evolution experiments;ER Jerison;Curr Opin Genet Dev,2015

4. Replaying the tape of life in the twenty-first century;V Orgogozo;Interface Focus,2015

5. Contingency and determinism in evolution: Replaying life’s tape;ZD Blount;Science,2018

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