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PMID: 28387971 Published · ppublish English Journal Article

Fitness effects of mutation: testing genetic redundancy in Arabidopsis thaliana.

Journal of evolutionary biology ·Vol. 30 ·No. 6 ·2017-00-00 ·Pages 1124-1135

Rutter MT, Wieckowski YM, Murren CJ, Strand AE

Abstract

Screens of organisms with disruptive mutations in a single gene often fail to detect phenotypic consequences for the majority of mutants. One explanation for this phenomenon is that the presence of paralogous loci provides genetic redundancy. However, it is also possible that the assayed traits are affected by few loci, that effects could be subtle or that phenotypic effects are restricted to certain environments. We assayed a set of T-DNA insertion mutant lines of Arabidopsis thaliana to determine the frequency with which mutation affected fitness-related phenotypes. We found that between 8% and 42% of the assayed lines had altered fitness from the wild type. Furthermore, many of these lines exhibited fitness greater than the wild type. In a second experiment, we grew a subset of the lines in multiple environments and found whether a T-DNA insert increased or decreased fitness traits depended on the assay environment. Overall, our evidence contradicts the hypothesis that genetic redundancy is a common phenomenon in A. thaliana for fitness traits. Evidence for redundancy from prior screens of knockout mutants may often be an artefact of the design of the phenotypic assays which have focused on less complex phenotypes than fitness and have used single environments. Finally, our study adds to evidence that beneficial mutations may represent a significant component of the mutational spectrum of A. thaliana.

Keywords
Arabidopsis T-DNA gene family size genetic redundancy mutation
MeSH Terms
Arabidopsis/genetics DNA, Bacterial Environment Genetic Fitness Mutation Phenotype
Chemicals
DNA, Bacterial T-DNA
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rutter M T ORCID
Department of Biology, College of Charleston, Charleston, SC, USA.
Wieckowski Y M
Department of Biology, College of Charleston, Charleston, SC, USA.
Murren C J
Department of Biology, College of Charleston, Charleston, SC, USA.
Strand A E
Department of Biology, College of Charleston, Charleston, SC, USA.
Article Info
Journal
Journal of evolutionary biology
Abbr.
J Evol Biol
ISSN
1420-9101
Published
2017-00-00
Epub
2017-00-02
Pages
1124-1135
Language
English
Region
Switzerland
NLM ID
8809954
Subset
IM
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