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Lysogeny in nature: mechanisms, impact and ecology of temperate phages

The ISME Journal · 2017 · Vol. 11(7) · pp. 1511–1520
Cristina Howard‐VaronaKatherine R. HargreavesStephen T. AbedonMatthew B. Sullivan

Abstract

Viruses that infect bacteria (phages) can influence bacterial community dynamics, bacterial genome evolution and ecosystem biogeochemistry. These influences differ depending on whether phages establish lytic, chronic or lysogenic infections. Although the first two produce virion progeny, with lytic infections resulting in cell destruction, phages undergoing lysogenic infections replicate with cells without producing virions. The impacts of lysogeny are numerous and well-studied at the cellular level, but ecosystem-level consequences remain underexplored compared to those of lytic infections. Here, we review lysogeny from molecular mechanisms to ecological patterns to emerging approaches of investigation. Our goal is to highlight both its diversity and importance in complex communities. Altogether, using a combined viral ecology toolkit that is applied across broad model systems and environments will help us understand more of the diverse lifestyles and ecological impacts of lysogens in nature.

Bacteriophages and microbial interactionsPlant Virus Research StudiesMicrobial infections and disease researchLysogenic cycleBiologyLytic cycleLysogenEcologyBacteriophageMicrobial ecologyEcosystemHuman viromeGeomicrobiology

MeSH terms

BacteriaBacteriophagesEnvironmental MicrobiologyLysogenyVirus Physiological Phenomena

Funding

  • National Science Foundation
  • Gordon and Betty Moore Foundation
Citations
847
FWCI
42.67
field-weighted impact
References
108
Percentile
100%
vs. same field & year
Citations per year
References
Prophages and bacterial genomics: what have we learned so far?
Molecular Microbiology · 2003 · 889 citations
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