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      <source-app name="Horizon">Horizon</source-app>
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      <ref-type name="Journal Article">17</ref-type>
      <work-type>ACL : Articles dans des revues avec comité de lecture répertoriées par l'AERES</work-type>
      <contributors>
        <authors>
          <author>
            <style face="normal" font="default" size="100%">Hunt, B. P. V.</style>
          </author>
          <author>
            <style face="normal" font="default" size="100%">Carlotti, F.</style>
          </author>
          <author>
            <style face="normal" font="default" size="100%">Donoso, K.</style>
          </author>
          <author>
            <style face="bold" font="default" size="100%">Pagano, Marc</style>
          </author>
          <author>
            <style face="normal" font="default" size="100%">D'Ortenzio, F.</style>
          </author>
          <author>
            <style face="normal" font="default" size="100%">Taillandier, V.</style>
          </author>
          <author>
            <style face="normal" font="default" size="100%">Conan, P.</style>
          </author>
        </authors>
      </contributors>
      <titles>
        <title>Trophic pathways of phytoplankton size classes through the zooplankton food web over the spring transition period in the north-west Mediterranean Sea</title>
        <secondary-title>Journal of Geophysical Research : Oceans</secondary-title>
      </titles>
      <pages>6309-6324</pages>
      <keywords>
        <keyword>zooplankton</keyword>
        <keyword>isotopes</keyword>
        <keyword>food web</keyword>
        <keyword>phytoplankton</keyword>
        <keyword>trophic pathways</keyword>
        <keyword>MEDITERRANEE</keyword>
      </keywords>
      <dates>
        <year>2017</year>
      </dates>
      <call-num>fdi:010071051</call-num>
      <language>ENG</language>
      <periodical>
        <full-title>Journal of Geophysical Research : Oceans</full-title>
      </periodical>
      <isbn>2169-9275</isbn>
      <accession-num>ISI:000410790600015</accession-num>
      <number>8</number>
      <electronic-resource-num>10.1002/2016jc012658</electronic-resource-num>
      <urls>
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          <url>https://www.documentation.ird.fr/hor/fdi:010071051</url>
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        <pdf-urls>
          <url>https://www.documentation.ird.fr/intranet/publi/2017/10/010071051.pdf</url>
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      </urls>
      <volume>122</volume>
      <remote-database-provider>Horizon (IRD)</remote-database-provider>
      <abstract>Knowledge of the relative contributions of phytoplankton size classes to zooplankton biomass is necessary to understand food-web functioning and response to climate change. During the Deep Water formation Experiment (DEWEX), conducted in the north-west Mediterranean Sea in winter (February) and spring (April) of 2013, we investigated phytoplankton-zooplankton trophic links in contrasting oligotrophic and eutrophic conditions. Size fractionated particulate matter (pico-POM, nano-POM, and micro-POM) and zooplankton (64 to &gt;4000 mu m) composition and carbon and nitrogen stable isotope ratios were measured inside and outside the nutrient-rich deep convection zone in the central Liguro-Provencal basin. In winter, phytoplankton biomass was low (0.28 mg m(-3)) and evenly spread among picophytoplankton, nanophytoplankton, and microphytoplankton. Using an isotope mixing model, we estimated average contributions to zooplankton biomass by pico-POM, nano-POM, and micro-POM of 28, 59, and 15%, respectively. In spring, the nutrient poor region outside the convection zone had low phytoplankton biomass (0.58 mg m(-3)) and was dominated by pico/nanophytoplankton. Estimated average contributions to zooplankton biomass by pico-POM, nano-POM, and micro-POM were 64, 28 and 10%, respectively, although the model did not differentiate well between pico-POM and nano-POM in this region. In the deep convection zone, spring phytoplankton biomass was high (1.34 mg m(-3)) and dominated by micro/nano phytoplankton. Estimated average contributions to zooplankton biomass by pico-POM, nano-POM, and micro-POM were 42, 42, and 20%, respectively, indicating that a large part of the microphytoplankton biomass may have remained ungrazed.</abstract>
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      <custom1>UR235</custom1>
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