Biogenic silica production and diatom dynamics in the Svalbard region during spring

Diatoms are generally the dominant contributors to the Arctic Ocean spring bloom, which is a key event in regional food webs in terms of capacity for secondary production and organic matter export. Dissolved silicic acid is an obligate nutrient for diatoms and has been declining in the European Arct...

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Veröffentlicht in:Biogeosciences 2018-11, Vol.15 (21), p.6503-6517
Hauptverfasser: Krause, Jeffrey W., Duarte, Carlos M., Marquez, Israel A., Assmy, Philipp, Fernández-Méndez, Mar, Wiedmann, Ingrid, Wassmann, Paul, Kristiansen, Svein, Agustí, Susana
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Sprache:eng
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Zusammenfassung:Diatoms are generally the dominant contributors to the Arctic Ocean spring bloom, which is a key event in regional food webs in terms of capacity for secondary production and organic matter export. Dissolved silicic acid is an obligate nutrient for diatoms and has been declining in the European Arctic since the early 1990s. The lack of regional silicon cycling information precludes understanding the consequences of such changes for diatom productivity during the Arctic spring bloom. This study communicates the results from a cruise in the European Arctic around Svalbard, which reports the first concurrent data on biogenic silica production and export, export of diatom cells, the degree of kinetic limitation by ambient silicic acid, and diatom contribution to primary production. Regional biogenic silica production rates were significantly lower than those achievable in the Southern Ocean and silicic acid concentration limited the biogenic silica production rate in 95 % of samples. Compared to diatoms in the Atlantic subtropical gyre, regional diatoms are less adapted for silicic acid uptake at low concentration, and at some stations during the present study, silicon kinetic limitation may have been intense enough to limit diatom growth. Thus, silicic acid can play a critical role in diatom spring bloom dynamics. The diatom contribution to primary production was variable, ranging from
ISSN:1726-4189
1726-4170
1726-4189
DOI:10.5194/bg-15-6503-2018