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Impact of moderately energetic fine-scale dynamics on the phytoplankton community structure in the western Mediterranean Sea

作者:Roxane Tzortzis, Andrea Michelangelo Doglioli, Stéphanie Barrillon, Anne Alexandra Petrenko, Francesco d’Ovidio, Lloyd Izard, Mélilotus Thyssen, Ananda Pascual, Bàrbara Barceló‐Llull, Frédéric Cyr, Marc Tedetti, Nagib Bhairy, Pierre Garreau, Franck Dumas, Gérald Grégori · 发表于:Biogeosciences · 年份:2021 · DOI:10.5194/bg-18-6455-2021 · 被引用次数:24 · 研究领域:Marine and coastal ecosystems、Oceanographic and Atmospheric Processes、Marine Biology and Ecology Research

Model simulations and remote sensing observations show that ocean dynamics at fine scales (1–100 km in space, day–weeks in time) strongly influence the distribution of phytoplankton. However, only a few in situ-based studies at fine scales have been performed, and most of them concern western boundary currents which may not be representative of less energetic regions. The PROTEVSMED-SWOT cruise took place in the moderately energetic waters of the western Mediterranean Sea (WMS), in the region south of the Balearic Islands. Taking advantage of near-real-time satellite information, we defined a sampling strategy in order to cross a frontal zone separating different water masses. Multi-parametric in situ sensors mounted on the research vessel, on a towed vehicle and on an ocean glider were used to sample physical and biogeochemical variables at a high spatial resolution. Particular attention was given to adapting the sampling route in order to estimate the vertical velocities in the frontal area also. This strategy was successful in sampling quasi-synoptically an oceanic area characterized by the presence of a narrow front with an associated vertical circulation. A multiparametric statistical analysis of the collected data identifies two water masses characterized by different abundances of several phytoplankton cytometric functional groups, as well as different concentrations of chlorophyll a and O 2 . Here, we focus on moderately energetic fronts induced by fine-scale circulat...