Seasonal enhancement of the viral shunt catalyzes a subsurface oxygen maximum in the Sargasso Sea
Abstract
Abstract Subsurface oxygen maxima (SOMs) occur directly beneath the mixed layer of stratified water columns across oligotrophic open ocean basins and have been associated with physical transport processes and localized increases in phytoplankton net primary productivity (NPP). We explore the hypothesis that viral lysis ( i.e ., the ‘viral shunt’) increases nutrient recycling and enhances NPP, supporting SOM formation in stratified water columns, focusing on a recurring SOM at the Bermuda Atlantic Time Series (BATS) in the Sargasso Sea. Reanalysis of historical BATS data showed enhanced Prochlorococcus and virus-like particle abundances associated with SOMs. Instances of high rates of primary and secondary production observed with oxygen supersaturation further implicate a biological mechanism for SOM formation. Leveraging metatranscriptomes, metaviromes, and polony-based data collected during a Lagrangian cruise (October 2019), we link the viral shunt to SOMs, including evidence of elevated cyanophage abundance and infection of Prochlorococcus , and transcriptomic evidence of increased organic matter uptake ( i.e ., catabolic activity) by copiotrophic bacteria. Cruise data also showed Prochlorococcus nitrogen metabolism transcripts consistent with increased responsiveness to bacterial remineralization. These findings illustrate the biogeochemical impacts of enhanced viral lysis in marine systems, including the potential role of the viral shunt in facilitating SOM formation in the oligotrophic oceans.
Article Details
Authors (18)
Naomi E. Gilbert
School of Biology
Daniel Muratore
Santa Fe Institute
Camelia Shopen Gochev
Gary R. LeCleir
School of Biology
Shelby M. Cagle
Helena L. Pound
Christine L. Sun
Alfonso Carrillo
Kimberley S. Ndlovu
Ilia Maidanik
Ashley R. Coenen
Lauren Chittick
Jennifer M. DeBruyn
Alison Buchan
Debbie Lindell
Matthew B. Sullivan
Joshua S. Weitz
Steven W. Wilhelm
School of Biology