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Elements of a theory for the mechanisms controlling abundance, diversity, and biogeochemical role of lytic bacterial viruses in aquatic systems

Limnology and Oceanography · 2000 · Vol. 45(6) · pp. 1320–1328
T. Frede Thingstad

Abstract

Mechanisms controlling virus abundance and partitioning of loss of bacterial production between viral lysis and protozoan predation are discussed within the framework of an idealized Lotka‐Volterra–type model. This combines nonselective protozoan predation with host‐selective viral lysis of bacteria. The analysis leads to a reciprocal relationship between bacterial diversity and viruses, in which coexistence of competing bacterial species is ensured by the presence of viruses that ‘kill the winner,’ whereas the differences in substrate affinity between the coexisting bacterial species determine viral abundance. The ability of the model to reproduce published observations, such as an approximate 1:10 ratio between bacterial and viral abundance, and the ability of viral lysis to account for 10–50% of bacterial loss are discussed.

Bacteriophages and microbial interactionsMicrobial Community Ecology and PhysiologyEvolution and Genetic DynamicsAbundance (ecology)BiologyBacterial virusLytic cycleBiogeochemical cycleEcologyBacterial cell structureLysisBacteriaVirus
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References
The Ecological Role of Water-Column Microbes in the Sea
Marine Ecology Progress Series · 1983 · 5,372 citations
The Paradox of the Plankton
The American Naturalist · 1961 · 3,061 citations
Viruses and Nutrient Cycles in the Sea
BioScience · 1999 · 1,261 citations
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