Host diversity slows bacteriophage adaptation by selecting generalists over specialists

Most viruses can infect multiple hosts, yet the selective mechanisms that maintain multi-host generalists over single-host specialists remain an open question. Here we propagate populations of the newly identified bacteriophage øJB01 in coculture with many host genotypes and find that while phage ca...

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Main Authors: Sant, DG, Woods, LC, Barr, JJ, McDonald, MJ
Format: Journal article
Language:English
Published: Springer Nature 2021
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author Sant, DG
Woods, LC
Barr, JJ
McDonald, MJ
author_facet Sant, DG
Woods, LC
Barr, JJ
McDonald, MJ
author_sort Sant, DG
collection OXFORD
description Most viruses can infect multiple hosts, yet the selective mechanisms that maintain multi-host generalists over single-host specialists remain an open question. Here we propagate populations of the newly identified bacteriophage øJB01 in coculture with many host genotypes and find that while phage can adapt to infect any of the new hosts, increasing the number of hosts slows the rate of adaptation. We quantify trade-offs in the capacity for individual phage to infect different hosts and find that phage from evolved populations with more hosts are more likely to be generalists. Sequencing of evolved phage reveals strong selection and the genetic basis of adaptation, supporting a model that shows how the addition of more potential hosts to a community can select for low-fitness generalists over high-fitness specialists. Our results show how evolution with multiple hosts alters the rate of viral adaptation and provides empirical support for an evolutionary mechanism that promotes generalists over specialists.
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spelling oxford-uuid:2e1be51f-1f48-4417-92f4-027b627a5abf2022-09-13T06:26:56ZHost diversity slows bacteriophage adaptation by selecting generalists over specialistsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:2e1be51f-1f48-4417-92f4-027b627a5abfEnglishSymplectic ElementsSpringer Nature2021Sant, DGWoods, LCBarr, JJMcDonald, MJMost viruses can infect multiple hosts, yet the selective mechanisms that maintain multi-host generalists over single-host specialists remain an open question. Here we propagate populations of the newly identified bacteriophage øJB01 in coculture with many host genotypes and find that while phage can adapt to infect any of the new hosts, increasing the number of hosts slows the rate of adaptation. We quantify trade-offs in the capacity for individual phage to infect different hosts and find that phage from evolved populations with more hosts are more likely to be generalists. Sequencing of evolved phage reveals strong selection and the genetic basis of adaptation, supporting a model that shows how the addition of more potential hosts to a community can select for low-fitness generalists over high-fitness specialists. Our results show how evolution with multiple hosts alters the rate of viral adaptation and provides empirical support for an evolutionary mechanism that promotes generalists over specialists.
spellingShingle Sant, DG
Woods, LC
Barr, JJ
McDonald, MJ
Host diversity slows bacteriophage adaptation by selecting generalists over specialists
title Host diversity slows bacteriophage adaptation by selecting generalists over specialists
title_full Host diversity slows bacteriophage adaptation by selecting generalists over specialists
title_fullStr Host diversity slows bacteriophage adaptation by selecting generalists over specialists
title_full_unstemmed Host diversity slows bacteriophage adaptation by selecting generalists over specialists
title_short Host diversity slows bacteriophage adaptation by selecting generalists over specialists
title_sort host diversity slows bacteriophage adaptation by selecting generalists over specialists
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AT woodslc hostdiversityslowsbacteriophageadaptationbyselectinggeneralistsoverspecialists
AT barrjj hostdiversityslowsbacteriophageadaptationbyselectinggeneralistsoverspecialists
AT mcdonaldmj hostdiversityslowsbacteriophageadaptationbyselectinggeneralistsoverspecialists