Abstract
Heterotrophic protists are a highly diverse and biogeochemically significant component of marine ecosystems, yet little is known about their species-specific prey preferences and symbiotic interactions in situ. Here we demonstrate how these previously unresolved questions can be addressed by sequencing the eukaryote and bacterial SSU rRNA genes from individual, uncultured protist cells collected from their natural marine environment and sorted by flow cytometry. We detected Pelagibacter ubique in association with a MAST-4 protist, an actinobacterium in association with a chrysophyte and three bacteroidetes in association with diverse protist groups. The presence of identical phylotypes among the putative prey and the free bacterioplankton in the same sample provides evidence for predator-prey interactions. Our results also suggest a discovery of novel symbionts, distantly related to Rickettsiales and the candidate divisions ZB3 and TG2, associated with Cercozoa and Chrysophyta cells. This study demonstrates the power of single cell sequencing to untangle ecological interactions between uncultured protists and prokaryotes.
MeSH Terms
Bacteria/classification,genetics,growth & development
Cercozoa/classification,genetics,growth & development
Chrysophyta/classification,genetics,growth & development
Ecosystem
Genes, rRNA
Heterotrophic Processes
Phylogeny
Pilot Projects
Seawater/microbiology
Single-Cell Analysis
Water Microbiology
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Martinez-Garcia Manuel
Single Cell Genomics Center, Bigelow Laboratory for Ocean Sciences, West Boothbay Harbor, ME 04575-0475, USA.
Brazel David
Poulton Nicole J
Swan Brandon K
Gomez Monica Lluesma
Masland Dashiell
Sieracki Michael E
Stepanauskas Ramunas
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