Mutation and Epistasis in Influenza Virus Evolution

Мутации и эпистаз в эволюции вируса гриппа
Daniel M. Lyons, Adam S. Lauring
2018-08-03

antiviral resistanceepistatic interactionsgenetic reassortmentinfluenza virus evolutionmutation
Influenza remains a persistent public health challenge, because the rapid evolution of influenza viruses has led to marginal vaccine efficacy, antiviral resistance, and the annual emergence of novel strains. This evolvability is driven, in part, by the virus's capacity to generate diversity through mutation and reassortment. Because many new traits require multiple mutations and mutations are frequently combined by reassortment, epistatic interactions between mutations play an important role in influenza virus evolution. While mutation and epistasis are fundamental to the adaptability of influenza viruses, they also constrain the evolutionary process in important ways. Here, we review recent work on mutational effects and epistasis in influenza viruses.
1
Epistatic interactions between mutations are important because many influenza traits require combinations of multiple mutations, often assembled through reassortment.
2
Influenza viruses rapidly evolve through mutation and reassortment, contributing to marginal vaccine efficacy, antiviral resistance, and recurrent emergence of novel strains.
3
Mutation and epistasis increase influenza adaptability but also constrain evolutionary trajectories and the emergence of possible variants.
4
The paper reviews recent research on mutational effects and epistasis in influenza viruses.

influenza viruses

mutational effects and epistatic interactions shaping influenza virus evolution and adaptability

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2018-08-03
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Daniel M. Lyons
Adam S. Lauring
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