Contact-number-driven virus evolution: A multi-level modeling framework for the evolution of acute or persistent RNA virus infection

Author:

Sunagawa JunyaORCID,Komorizono Ryo,Park Hyeongki,Hart William S.,Thompson Robin N.ORCID,Makino Akiko,Tomonaga Keizo,Iwami ShingoORCID,Yamaguchi RyoORCID

Abstract

Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RNA viruses with a short duration of infection and a high peak viral load, such as SARS-CoV-2, are maintained in human populations. By contrast, RNA viruses characterized by a long infection duration and a low peak viral load (e.g., borna disease virus) can be maintained in nonhuman populations, and the process of the evolution of persistent viruses has rarely been explored. Here, using a multi-level modeling approach including both individual-level virus infection dynamics and population-scale transmission, we consider virus evolution based on the host environment, specifically, the effect of the contact history of infected hosts. We found that, with a highly dense contact history, viruses with a high virus production rate but low accuracy are likely to be optimal, resulting in a short infectious period with a high peak viral load. In contrast, with a low-density contact history, viral evolution is toward low virus production but high accuracy, resulting in long infection durations with low peak viral load. Our study sheds light on the origin of persistent viruses and why acute viral infections but not persistent virus infection tends to prevail in human society.

Funder

Grants-in-Aid for JSPS Scientific Research

JSPS Overseas Research Fellowships

ACT-X

AMED CREST

AMED Research Program on HIV/AIDS

AMED Japan Program for Infectious Diseases Research and Infrastructure

National Center for Emerging and Zoonotic Infectious Diseases

AMED Program for Basic and Clinical Research on Hepatitis

AMED Program on the Innovative Development and the Application of New Drugs for Hepatitis B

Moonshot Research and Development Program

JST MIRAI

Mitsui Life Social Welfare Foundation

Shinnihon Foundation of Advanced Medical Treatment Research

Suzuken Memorial Foundation

Life Science Foundation of Japan

Secom Science and Technology Foundation

The Japan Prize Foundation

Daiwa Securities Health Foundation

Publisher

Public Library of Science (PLoS)

Subject

Computational Theory and Mathematics,Cellular and Molecular Neuroscience,Genetics,Molecular Biology,Ecology,Modeling and Simulation,Ecology, Evolution, Behavior and Systematics

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