| Using Fe chemistry to predict Fe uptake rates for natural plankton assemblages from the Southern Ocean | Marine chemistry |  | | 2020 | 213 | 1 |
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| Response of phytoplankton from the metalimnetic chlorophyll maximum to macro- and micro-nutrients amendments in Lake Geneva | Journal of Great Lakes research |  | | 2019 | 150 | 0 |
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| Elemental stoichiometry and photophysiology regulation of Synechococcus sp. PCC7002 under increasing severity of chronic iron limitation | Plant and Cell Physiology |  | | 2018 | 524 | 268 |
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| Physiological responses of coccolithophores to abrupt exposure of naturally low pH deep seawater | PloS one |  | | 2017 | 729 | 319 |
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| Quantifying iron oceanic limitation and its impact on marine phytoplankton biodiversity and productivity | |  | | 2017 | 846 | 827 |
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| Long-Term Acclimation to Iron Limitation Reveals New Insights in Metabolism Regulation of Synechococcus sp. PCC7002 | Frontiers in marine science |  | | 2017 | 568 | 342 |
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| Phenotypic Variability in the Coccolithophore Emiliania huxleyi | PloS one |  | | 2016 | 641 | 342 |
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| Southern Ocean phytoplankton physiology in a changing climate | Journal of plant physiology |  | | 2016 | 761 | 1 |
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| Influence of temperature and CO2 on the strontium and magnesium composition of coccolithophore calcite | Biogeosciences |  | | 2014 | 776 | 410 |
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| Iron Biogeochemistry in Aquatic Systems: From Source to Bioavailability | Chimia |  | | 2014 | 691 | 3 |
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| Community composition has greater impact on the functioning of marine phytoplankton communities than ocean acidification | Global change biology |  | | 2014 | 717 | 2 |
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| Removal of organic magnesium in coccolithophore calcite | Geochimica et cosmochimica acta |  | | 2012 | 622 | 0 |
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