Literature DB >> 26564159

Synergistic Pleiotropy Overrides the Costs of Complexity in Viral Adaptation.

Lindsey W McGee1, Andrew M Sackman1, Anneliese J Morrison1, Jessica Pierce1, Jeremy Anisman1, Darin R Rokyta2.   

Abstract

Adaptive evolution progresses as a series of steps toward a multidimensional phenotypic optimum, and organismal or environmental complexity determines the number of phenotypic dimensions, or traits, under selection. Populations evolving in complex environments may experience costs of complexity such that improvement in one or more traits is impeded by selection on others. We compared the fitness effects of the first fixed mutations for populations of single-stranded DNA bacteriophage evolving under simple selection for growth rate to those of populations evolving under more complex selection for growth rate as well as capsid stability. We detected a cost of complexity manifested as a smaller growth rate improvement for mutations fixed under complex conditions. We found that, despite imposing a cost for growth rate improvement, strong complex selection resulted in the greatest overall fitness improvement, even for single mutations. Under weaker secondary selective pressures, tradeoffs between growth rate and stability were pervasive, but strong selection on the secondary trait resulted largely in mutations beneficial to both traits. Strength of selection therefore determined the nature of pleiotropy governing observed trait evolution, and strong positive selection forced populations to find mutations that improved multiple traits, thereby overriding costs incurred as a result of a more complex selective environment. The costs of complexity, however, remained substantial when considering the effects on a single trait in the context of selection on multiple traits.
Copyright © 2016 by the Genetics Society of America.

Entities:  

Keywords:  bacteriophage; complexity; pleiotropy; strong selection

Mesh:

Year:  2015        PMID: 26564159      PMCID: PMC4701092          DOI: 10.1534/genetics.115.181628

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


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