Literature DB >> 26567153

Breaking evolutionary constraint with a tradeoff ratchet.

Marjon G J de Vos1, Alexandre Dawid2, Vanda Sunderlikova3, Sander J Tans4.   

Abstract

Epistatic interactions can frustrate and shape evolutionary change. Indeed, phenotypes may fail to evolve when essential mutations are only accessible through positive selection if they are fixed simultaneously. How environmental variability affects such constraints is poorly understood. Here, we studied genetic constraints in fixed and fluctuating environments using the Escherichia coli lac operon as a model system for genotype-environment interactions. We found that, in different fixed environments, all trajectories that were reconstructed by applying point mutations within the transcription factor-operator interface became trapped at suboptima, where no additional improvements were possible. Paradoxically, repeated switching between these same environments allows unconstrained adaptation by continuous improvements. This evolutionary mode is explained by pervasive cross-environmental tradeoffs that reposition the peaks in such a way that trapped genotypes can repeatedly climb ascending slopes and hence, escape adaptive stasis. Using a Markov approach, we developed a mathematical framework to quantify the landscape-crossing rates and show that this ratchet-like adaptive mechanism is robust in a wide spectrum of fluctuating environments. Overall, this study shows that genetic constraints can be overcome by environmental change and that cross-environmental tradeoffs do not necessarily impede but also, can facilitate adaptive evolution. Because tradeoffs and environmental variability are ubiquitous in nature, we speculate this evolutionary mode to be of general relevance.

Entities:  

Keywords:  constraint; environment; epistasis; evolution; fitness landscape

Mesh:

Substances:

Year:  2015        PMID: 26567153      PMCID: PMC4672788          DOI: 10.1073/pnas.1510282112

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  73 in total

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  24 in total

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Review 3.  The thermostability and specificity of ancient proteins.

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9.  The adaptive landscape of a metallo-enzyme is shaped by environment-dependent epistasis.

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10.  Phenotypic plasticity as an adaptation to a functional trade-off.

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