Adsorptive exchange of coccolith biominerals facilitates viral infection

Author:

Johns Christopher T.1ORCID,Bondoc-Naumovitz Karen Grace1ORCID,Matthews Alexandra1ORCID,Matson Paul G.2ORCID,Iglesias-Rodriguez M. Debora2,Taylor Alison R.3ORCID,Fuchs Heidi L.1ORCID,Bidle Kay D.1ORCID

Affiliation:

1. Department of Marine and Coastal Sciences, Rutgers University, New Brunswick, NJ 08901, USA.

2. Ecology, Evolution, and Marine Biology, University of California, Santa Barbara, Santa Barbara, CA 93117, USA.

3. Department of Biology and Marine Biology, University of North Carolina Wilmington, Wilmington, NC 28403, USA.

Abstract

Marine coccolithophores are globally distributed, unicellular phytoplankton that produce nanopatterned, calcite biominerals (coccoliths). These biominerals are synthesized internally, deposited into an extracellular coccosphere, and routinely released into the external medium, where they profoundly affect the global carbon cycle. The cellular costs and benefits of calcification remain unresolved. Here, we show observational and experimental evidence, supported by biophysical modeling, that free coccoliths are highly adsorptive biominerals that readily interact with cells to form chimeric coccospheres and with viruses to form “viroliths,” which facilitate infection. Adsorption to cells is mediated by organic matter associated with the coccolith base plate and varies with biomineral morphology. Biomineral hitchhiking increases host-virus encounters by nearly an order of magnitude and can be the dominant mode of infection under stormy conditions, fundamentally altering how we view biomineral-cell-virus interactions in the environment.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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