Monitoring bay-scale bivalve aquaculture ecosystem interactions using flow cytometry

Bay-scale empirical demonstrations of how bivalve aquaculture alters plankton composition, and subsequently ecological functioning and higher trophic levels, are lacking. Temporal, inter- and within-bay variation in hydrodynamic, environmental, and aquaculture pressure limit efficient plankton monitoring design to detect bay-scale changes and inform aquaculture ecosystem interactions. Here, we used flow cytometry to investigate spatio-temporal variations in bacteria and phytoplankton (< 20 µm) composition in four bivalve aquaculture embayments. We observed higher abundances of bacteria and phytoplankton in shallow embayments that experienced greater freshwater and nutrient inputs. Depleted nutrient conditions may have led to the dominance of picophytoplankton cells, which showed strong within-bay variation as a function of riverine vs freshwater influence and nutrient availability. Although environmental forcings appeared to be a strong driver of spatio-temporal trends, results showed that bivalve aquaculture may reduce near-lease phytoplankton abundance and favor bacterial growth. We discuss aquaculture pathways of effects such as grazing, benthic-pelagic coupling processes, and microbial biogeochemical cycling. Conclusions provide guidance on optimal sampling considerations using flow cytometry in aquaculture sites based on embayment geomorphology and hydrodynamics.

Cite this data as: Sharpe H, Lacoursière-Roussel A, Barrell J (2024). Monitoring bay-scale bivalve aquaculture ecosystem interactions using flow cytometry. Version 1.2. Fisheries and Oceans Canada. Samplingevent dataset. https://ipt.iobis.org/obiscanada/resource?r=monitoring_bay-scale_bivalve_aquaculture_ecosystem_interactions_using_flow_cytometry&v=1.2

Data and Resources

Additional Info

Field Value
Last Updated April 17, 2026, 20:02 (UTC)
Created April 17, 2026, 20:02 (UTC)
contact_email DFO.CESDDataRequest-DSECDemandededonnes.MPO@dfo-mpo.gc.ca
contact_person {"en": "Government of Canada; Fisheries and Oceans Canada; Coastal Ecosystem Science Division (CESD)", "fr": "Gouvernement du Canada; Pêches et Océans Canada; Division des sciences des écosystèmes côtiers (DSEC)"}
criticality_level []
data_dictionary EPSG:4326,https://epsg.io,8.2.6
geographic_scope []
open_canada_collection fgp
open_canada_date_published 2024-10-16 00:00:00
open_canada_keywords {"en": ["Phytoplankton", "Aquaculture", "Oceans", "Ecosystems", "Coastal waters", "Bacteria", "Nova Scotia", "New Brunswick"], "fr": ["Phytoplancton", "Aquaculture", "Océan", "Écosystème", "Eaux côtières", "Bactérie", "Nouvelle-Écosse", "Nouveau-Brunswick"]}
open_canada_subject ["nature_and_environment", "science_and_technology"]
sensitivity_level unrestricted
title_fr Surveillance des interactions des écosystèmes d’aquaculture de bivalves à l’échelle de la baie au moyen de la cytométrie en flux
update_frequency not_planned