Evolution of haploid and diploid populations reveals common, strong, and variable pleiotropic effects in non-home environments

Author:

Chen Vivian1ORCID,Johnson Milo S234ORCID,Hérissant Lucas5ORCID,Humphrey Parris T2ORCID,Yuan David C1ORCID,Li Yuping1,Agarwala Atish6,Hoelscher Samuel B5,Petrov Dmitri A1ORCID,Desai Michael M2347ORCID,Sherlock Gavin5ORCID

Affiliation:

1. Department of Biology, Stanford University

2. Department of Organismic and Evolutionary Biology, Harvard University

3. Quantitative Biology Initiative, Harvard University

4. NSF-Simons Center for Mathematical and Statistical Analysis of Biology, Harvard University

5. Department of Genetics, Stanford University

6. Department of Physics, Stanford University

7. Department of Physics, Harvard University

Abstract

Adaptation is driven by the selection for beneficial mutations that provide a fitness advantage in the specific environment in which a population is evolving. However, environments are rarely constant or predictable. When an organism well adapted to one environment finds itself in another, pleiotropic effects of mutations that made it well adapted to its former environment will affect its success. To better understand such pleiotropic effects, we evolved both haploid and diploid barcoded budding yeast populations in multiple environments, isolated adaptive clones, and then determined the fitness effects of adaptive mutations in ‘non-home’ environments in which they were not selected. We find that pleiotropy is common, with most adaptive evolved lineages showing fitness effects in non-home environments. Consistent with other studies, we find that these pleiotropic effects are unpredictable: they are beneficial in some environments and deleterious in others. However, we do find that lineages with adaptive mutations in the same genes tend to show similar pleiotropic effects. We also find that ploidy influences the observed adaptive mutational spectra in a condition-specific fashion. In some conditions, haploids and diploids are selected with adaptive mutations in identical genes, while in others they accumulate mutations in almost completely disjoint sets of genes.

Funder

National Institute of General Medical Sciences

National Science Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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