Zooplankton and Micronekton Active Flux Across the Tropical and Subtropical Atlantic Ocean

Активный поток зоопланктона и микронектона в тропической и субтропической Атлантике
Santiago Hernández‐León, M. Pilar Olivar, María Luz Fernández de Puelles, Antonio Bode, Arturo Castellón, C. López‐Pérez, Víctor M. Tuset, José Ignacio González-Gordillo
2019-09-02

biological carbon pumpdiel vertical migrationmicronekton active fluxrespiratory fluxzooplankton active flux
Quantification of the actual amount of carbon export to the mesopelagic layer by both zooplankton and micronekton is at present a gap in the knowledge of the biological pump. These organisms perform diel vertical migrations exporting carbon through respiration, excretion, mortality, and egestion during their residence at depth. The role of zooplankton in active flux is nowadays partially assessed. However, micronekton active flux is scarcely known and only a few studies addressed this downward transport. Even less is known about the capacity of both communities to export carbon in the ocean. Here, we show the results of zooplankton and micronekton active flux across a productivity gradient in the tropical and subtropical Atlantic Ocean. Biomass vertical distribution from the surface up to 800 m depth by day and night was studied during April 2015 in a transect from 9oS to 25oN, covering from the quite oligotrophic zone off Brazil to the meso- and eutrophic areas of the equator, Guinea Dome, and the oceanic upwelling off Northwest Africa. Zooplankton and micronekton migrant biomass was estimated from day and night catches at different layers of the water column using MOCNESS-1 (1 m2 mouth area) and Mesopelagos (35 m2) nets, respectively. Respiratory flux was assessed by measuring the enzymatic activity of the electron transfer system (ETS) of organisms at depth. Results showed a close relationship between migrant biomass and respiratory flux in zooplankton and micronekton as expected. Using a rather conservative 50% of efficiency for the net used to capture micronekton, respiratory flux resulted in similar values for both communities. Gravitational (passive) flux measured using sediment traps increased from the oligotrophic towards the meso- and eutrophic zones. Total active flux (including respiration and estimated mortality, excretion, and gut flux) by zooplankton and micronekton accounted for about 25% of total flux (passive plus active) in oligotrophic zones. Total active flux also increased towards meso- and eutrophic zones, reaching about 80% of total flux and being at least 2-fold higher than passive flux. These results alert about an important underestimation of the ocean biological pump using only passive flux measurements.
1
Active flux contributed about 25% of total carbon flux in oligotrophic zones, increasing to approximately 80% in meso- and eutrophic zones.
2
In productive regions, active flux was at least twice passive flux, indicating that passive measurements substantially underestimate the biological pump.
3
Passive gravitational flux increased from oligotrophic Brazilian waters toward meso- and eutrophic Atlantic regions.
4
Using a conservative 50% micronekton net-capture efficiency, zooplankton and micronekton respiratory fluxes were similar.
5
Zooplankton and micronekton migrant biomass showed a close relationship with respiratory flux across the tropical and subtropical Atlantic.

Zooplankton and micronekton communities migrating through the mesopelagic layer across the tropical and subtropical Atlantic Ocean

Diel vertical migration, biomass distribution, respiratory flux, and total active carbon export by zooplankton and micronekton across an oceanic productivity gradient

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2019-09-02
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Santiago Hernández‐León
M. Pilar Olivar
María Luz Fernández de Puelles
Antonio Bode
Arturo Castellón
C. López‐Pérez
Víctor M. Tuset
José Ignacio González-Gordillo
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