Competition-driven eco-evolutionary feedback reshapes bacteriophage lambda's fitness landscape and enables speciation
Doud, M. B.; Gupta, A.; Li, V.; Medina, S. J.; De La Fuente, C. A.; Meyer, J. R.
Show abstract
A major challenge in evolutionary biology is explaining how populations navigate rugged fitness landscapes without getting trapped on local optima. One idea illustrated by adaptive dynamics theory is that as populations adapt, their newly enhanced capacities to exploit resources alter fitness payoffs and restructure the landscape in ways that promote speciation by opening new adaptive pathways. While there have been indirect tests of this theory, none have measured how fitness landscapes deform during adaptation, or test whether these shifts promote diversification. Here, we achieve this by studying bacteriophage , a virus that readily speciates into co-existing receptor specialists under controlled laboratory conditions. We used a high-throughput gene editing-phenotyping technology to measure s fitness landscape in the presence of different evolved- competitors and found that the fitness effects of individual mutations, and their epistatic interactions, depend on the competitor. Using these empirical data, we simulated s evolution on an un-changing landscape and one that recapitulates how the landscape deforms during evolution. heterogeneity only evolved in the shifting landscape regime. This study provides a test of adaptive dynamics, and, more broadly, shows how fitness landscapes dynamically change during adaptation, potentiating phenomena like speciation by opening new adaptive pathways.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Principles of dengue virus evolvability derived from genotype-fitness maps in human and mosquito cells 97%
- Competition between phage-resistance mechanisms determines the outcome of bacterial co-existence 96%
- Antigenic evolution of human influenza H3N2 neuraminidase is constrained by charge balancing 96%
Similar papers in this journal
Similar papers in this journal
- Evolution during primary HIV infection does not require adaptive immune selection 97%
- Multiplicity of Type 6 Secretion System toxins limits the evolution of resistance 96%
- CRISPR with Transcriptional Readout reveals influenza transcriptionis modulated by NELF and can precipitate an interferon response 95%
Similar papers in this journal
- Elucidating the Mechanism by Which HIV-1 Nucleocapsid Mutations Confer Resistance to Integrase Strand Transfer Inhibitors 95%
- Conserved sites on the influenza H1 and H3 hemagglutinin recognized by human antibodies 95%
- A conserved opal termination codon optimizes a temperature-dependent tradeoff between protein production and processing in alphaviruses 95%