Nitrogen and phosphorus differentially control marine biomass production and stoichiometry.

Seelen, Emily A; Gleich, Samantha J; Kumler, William; Anderson, Hanna S; Bian, Xiaopeng; Björkman, Karin M; Caron, David A; Dyhrman, Sonya T et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Globally averaged, surface particulate nitrogen and phosphorus approximate the 16:1, N:P "Redfield ratio." In observations, N:P ratios vary latitudinally at ranges attributable to both phytoplankton community composition and physiological acclimation, but their relative contributions to the N:P ratio remain unclear. Here, results from a 29-day mesocosm experiment highlight how inorganic nitrogen and/or phosphorus nutrient supply can affect the bulk particle stoichiometry of a North Pacific Subtropical Gyre plankton community. Nitrogen additions, with and without phosphorus, increase total productivity and diatom abundance, whereas treatments with just phosphorus additions remain similar to the no-nutrient addition control. Continual nitrogen supply without phosphorus results in higher particulate N:P ratios than expected based on the phytoplankton community present. Several P-stress markers identified in those treatments highlight the importance of acclimation in extending particulate N:P ratios beyond the Redfield ratio. Phytoplankton's ability to maintain growth under P-stress conditions has implications for global carbon cycling.

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