<div><p>In aquatic ecosystems, the superimposition of mixing events to the light diel cycle exposes phytoplankton to changes in the velocity of light intensity increase, from diurnal variations to faster mixing-related ones. This is particularly true in coastal waters, where diatoms are dominant. This study aims to investigate if coastal diatoms differently activate the photoprotective responses, xanthophyll cycle (XC) and non-photochemical fluorescence quenching (NPQ), to cope with predictable light diel cycle and unpredictable mixing-related light variations. We compared the effect of two fast light intensity increases (simulating mixing events) with that of a slower increase (corresponding to the light diel cycle) on the modulation of XC...
<strong>Summary</strong> Aquatic photosynthetic organisms unavoidably experience light fluctuations ...
International audienceMarine diatoms are prominent phytoplankton organisms that perform photosynthes...
<p>Benthic diatoms are dominant primary producers in intertidal marine sediments, which are characte...
International audienceIn aquatic ecosystems, the superimposition of mixing events to the light diel ...
Phytoplankton, such as diatoms, experience great variations of photon flux density (PFD) and light s...
Diatoms living in intertidal sediments have to be able to rapidly adjust photosynthesis in response ...
Phytoplankton, such as diatoms, experience great variations of photon flux density (PFD) and light s...
International audienceThe pool size of the xanthophyll cycle pigment diadinoxanthin in the diatom Ph...
AbstractDiatoms are a major group of microalgae whose photosynthetic productivity supports a substan...
International audienceDiatoms are a major group of microalgae whose photosynthetic productivity supp...
International audienceIn this study, we show a fundamental difference between diatom species from di...
International audienceIn this study, we investigated the different photoregulation responses of diat...
Marine phytoplankton, and in particular diatoms, are responsible for almost half of all primary prod...
Diatoms contain a highly flexible capacity to dissipate excessively absorbed light by nonphotochemic...
International audiencePlanktonic diatoms (Bacillariophyceae) have to cope with large fluctuations of...
<strong>Summary</strong> Aquatic photosynthetic organisms unavoidably experience light fluctuations ...
International audienceMarine diatoms are prominent phytoplankton organisms that perform photosynthes...
<p>Benthic diatoms are dominant primary producers in intertidal marine sediments, which are characte...
International audienceIn aquatic ecosystems, the superimposition of mixing events to the light diel ...
Phytoplankton, such as diatoms, experience great variations of photon flux density (PFD) and light s...
Diatoms living in intertidal sediments have to be able to rapidly adjust photosynthesis in response ...
Phytoplankton, such as diatoms, experience great variations of photon flux density (PFD) and light s...
International audienceThe pool size of the xanthophyll cycle pigment diadinoxanthin in the diatom Ph...
AbstractDiatoms are a major group of microalgae whose photosynthetic productivity supports a substan...
International audienceDiatoms are a major group of microalgae whose photosynthetic productivity supp...
International audienceIn this study, we show a fundamental difference between diatom species from di...
International audienceIn this study, we investigated the different photoregulation responses of diat...
Marine phytoplankton, and in particular diatoms, are responsible for almost half of all primary prod...
Diatoms contain a highly flexible capacity to dissipate excessively absorbed light by nonphotochemic...
International audiencePlanktonic diatoms (Bacillariophyceae) have to cope with large fluctuations of...
<strong>Summary</strong> Aquatic photosynthetic organisms unavoidably experience light fluctuations ...
International audienceMarine diatoms are prominent phytoplankton organisms that perform photosynthes...
<p>Benthic diatoms are dominant primary producers in intertidal marine sediments, which are characte...