Trade-offs of lipid remodeling in a marine predator-prey interaction in response to phosphorus limitation.
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ABSTRACT: Phosphorus (P) is a key nutrient limiting bacterial growth and primary production in the oceans. Unsurprisingly, marine microbes have evolved sophisticated strategies to adapt to P limitation, one of which involves the remodeling of membrane lipids by replacing phospholipids with non-P-containing surrogate lipids. This strategy is adopted by both cosmopolitan marine phytoplankton and heterotrophic bacteria and serves to reduce the cellular P quota. However, little, if anything, is known of the biological consequences of lipid remodeling. Here, using the marine bacterium Phaeobacter sp. MED193 and the ciliate Uronema marinum as a model, we sought to assess the effect of remodeling on bacteria-protist interactions. We discovered an important trade-off between either escape from
SUBMITTER: Guillonneau R
PROVIDER: S-EPMC9457565 | biostudies-literature | 2022 Sep
REPOSITORIES: biostudies-literature
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